Crossref journal-article
Elsevier BV
Progress in Materials Science (78)
Bibliography

Saha, P., Datta, M. K., Velikokhatnyi, O. I., Manivannan, A., Alman, D., & Kumta, P. N. (2014). Rechargeable magnesium battery: Current status and key challenges for the future. Progress in Materials Science, 66, 1–86.

Authors 6
  1. Partha Saha (first)
  2. Moni Kanchan Datta (additional)
  3. Oleg I. Velikokhatnyi (additional)
  4. Ayyakkannu Manivannan (additional)
  5. David Alman (additional)
  6. Prashant N. Kumta (additional)
References 239 Referenced 599
  1. U.S. DOE. Smart grid research and development multi-year program plan (MYPP) 2010–2014. <http://www.oe.energy.gov>.
  2. U.S. DOE. Barriers to achieving the modern grid; July 2007. <http://www.netl.doe.gov/smartgrid>.
  3. U.S. DOE, Energy Storage – A key enabler of the smart grid; September 2009. <http://www.netl.doe.gov/smartgrid>.
  4. U.S. DOE. Technology and applied R&D needs for electrical energy storage, resource document for the workshop on basic research needs for electrical energy storage; March 2007. <http://www.energy.gov>.
  5. EPRI-DOE handbook of energy storage for transmission & distribution applications, EPRI, Palo Alto, CA, and the U.S. Department of Energy, Washington, DC; 2003. p. 1001834.
  6. Basic Research Needs for Electrical Energy Storage, Office of Basic Energy Sciences, U.S. DOE; July 2007.
  7. 10.1126/science.1212741 / Science / Electrical energy storage for the grid: a battery of choices by Dunn (2011)
  8. 10.1021/cr100290v / Chem Rev / Electrochemical energy storage for green grid by Yang (2011)
  9. {'key': '10.1016/j.pmatsci.2014.04.001_b0045', 'series-title': 'Renewable energy: power for a sustainable future', 'author': 'Boyle', 'year': '2004'} / Renewable energy: power for a sustainable future by Boyle (2004)
  10. 10.1557/mrs2008.82 / MRS Bull / Materials challenges facing electrical energy storage by Whittingham (2008)
  11. {'key': '10.1016/j.pmatsci.2014.04.001_b0055', 'series-title': 'Energy storage', 'first-page': '428', 'author': 'Huggins', 'year': '2010'} / Energy storage by Huggins (2010)
  12. 10.1063/1.3047681 / Phys Today / Batteries and electrochemical capacitors by Abruna (2008)
  13. Linden’s Handbook of Batteries (4th Edition): McGraw-Hill; 2010.
  14. 10.1149/1.2969424 / J Electrochem Soc / Effect of electrolyte composition on lithium dendrite growth by Crowther (2008)
  15. 10.1016/j.biomaterials.2005.10.003 / Biomaterials / Magnesium and its alloys as orthopedic biomaterials: a review by Staiger (2006)
  16. 10.1016/j.actbio.2010.02.028 / Acta Biomater / The history of biodegradable magnesium implants: a review by Witte (2010)
  17. 10.1021/cm9016497 / Chem Mater / On the way to rechargeable Mg batteries: the challenge of new cathode materials by Levi (2010)
  18. 10.1002/adma.200701495 / Adv Mater / Progress in rechargeable magnesium battery technology by Aurbach (2007)
  19. 10.1016/S0013-4686(99)00216-9 / Electrochim Acta / Magnesium insertion electrodes for rechargeable nonaqueous batteries – a competitive alternative to lithium? by Novák (1999)
  20. 10.1039/c002456b / Chem Commun / Mesoporous magnesium manganese silicate as cathode materials for rechargeable magnesium batteries by NuLi (2010)
  21. Doe RE, Blomgren GE, Persson KA. Rechargeable magnesium ion cell components and assembly. US Patent 8,361,661; 2013.
  22. 10.1038/ncomms1435 / Nat Commun / Structure and compatibility of a magnesium electrolyte with a sulphur cathode by Kim (2011)
  23. 10.1038/35037553 / Nature / Prototype systems for rechargeable magnesium batteries by Aurbach (2000)
  24. 10.1016/0013-4686(85)80104-3 / Electrochim Acta / The magnesium and magnesium amalgam electrodes in aprotic organic solvents a kinetic study by Brown (1985)
  25. 10.1016/S0022-0728(99)00146-1 / J Electroanal Chem / On the electrochemical behavior of magnesium electrodes in polar aprotic electrolyte solutions by Lu (1999)
  26. 10.1149/1.2133474 / J Electrochem Soc / The kinetics of the magnesium electrode in thionyl chloride solutions by Peled (1977)
  27. 10.1149/1.2086227 / J Electrochem Soc / Discharge and AC impedance studies of lithium, calcium, and magnesium anodes in bromine trifluoride by Miles (1990)
  28. 10.1149/1.2127512 / J Electrochem Soc / Solid electrolyte interphase (SEI) electrode by Meitav (1981)
  29. {'key': '10.1016/j.pmatsci.2014.04.001_b0145', 'first-page': '411', 'article-title': 'Electrochemical behavior of magnesium anode in non-aqueous solutions', 'volume': '66', 'author': 'Shibata', 'year': '1998', 'journal-title': 'Electrochemistry'} / Electrochemistry / Electrochemical behavior of magnesium anode in non-aqueous solutions by Shibata (1998)
  30. 10.1016/0378-7753(88)87001-0 / J Power Sour / Surface film effect on the electrochemical behaviour of active metals by Kedrinsky (1988)
  31. 10.1007/s11164-013-1449-9 / Res Chem Intermed / Effects of water content on magnesium deposition from a Grignard reagent-based tetrahydrofuran electrolyte by Yagi (2014)
  32. 10.1007/BF01058874 / J Appl Electrochem / The properties of some mixed organic electrolyte solutions and their effects on the anodic performances of Mg electrodes by Saito (1976)
  33. 10.1016/0013-4686(95)00326-6 / Electrochim Acta / Plating of magnesium from organic solvents by Lossius (1996)
  34. 10.1149/2.012301jes / J Electrochem Soc / Evaluation of Mg[N(SO2CF3)2]2/acetonitrile electrolyte for use in Mg-ion cells by Tran (2012)
  35. Lamanna William M, Tran Tuan T, Obrovac MN. Electrochemical magnesium cell and method of making same. PCT International Patent WO/2013/122783; 2013.
  36. 10.1002/tcr.10051 / Chem Rec / Nonaqueous magnesium electrochemistry and its application in secondary batteries by Aurbach (2003)
  37. 10.1016/0022-0728(86)87044-9 / J Electroanal Chem Interf Electrochem / Studies using microelectrodes of the Mg(II)/Mg couple in tetrahydrofuran and propylene carbonate by Genders (1986)
  38. 10.1149/1.2407964 / J Electrochem Soc / Note on the electrodeposition of magnesium from an organic solution of a magnesium–boron complex by Brenner (1971)
  39. 10.1023/A:1018464210084 / J Appl Electrochem / Reversibility of electrochemical magnesium deposition from Grignard solutions by Liebenow (1997)
  40. 10.1149/1.3298883 / J Electrochem Soc / Morphology and preferred orientation of pulse electrodeposited magnesium by Gummow (2010)
  41. 10.1016/j.jpowsour.2010.11.141 / J Power Sour / Study on electrochemically deposited Mg metal by Matsui (2011)
  42. 10.1016/j.electacta.2012.05.001 / Electrochim Acta / Study of the electrochemical deposition of Mg in the atomic level: why it prefers the non-dendritic morphology by Ling (2012)
  43. 10.1149/1.2086553 / J Electrochem Soc / Nonaqueous electrochemistry of magnesium by Gregory (1990)
  44. 10.1016/S1388-2481(00)00094-1 / Electrochem Commun / The electrodeposition of magnesium using solutions of organomagnesium halides, amidomagnesium halides and magnesium organoborates by Liebenow (2000)
  45. {'key': '10.1016/j.pmatsci.2014.04.001_b0225', 'series-title': 'Nonaqueous electrochemistry', 'author': 'Aurbach', 'year': '1999'} / Nonaqueous electrochemistry by Aurbach (1999)
  46. 10.1149/1.1429925 / J Electrochem Soc / Electrolyte solutions for rechargeable magnesium batteries based on organomagnesium chloroaluminate complexes by Aurbach (2002)
  47. 10.1149/1.1387980 / J Electrochem Soc / On the mechanisms of reversible magnesium deposition processes by Aurbach (2001)
  48. 10.1002/adma.200304415 / Adv Mater / Solid-state rechargeable magnesium batteries by Chusid (2003)
  49. 10.1021/om049949a / Organometallics / Alkyl group transmetalation reactions in electrolytic solutions studied by multinuclear NMR by Gizbar (2004)
  50. {'key': '10.1016/j.pmatsci.2014.04.001_b0250', 'series-title': 'Encyclopedia of electrochemical power sources', 'first-page': '285', 'article-title': 'Secondary batteries | magnesium batteries (secondary and primary)', 'author': 'Gofer', 'year': '2009'} / Encyclopedia of electrochemical power sources / Secondary batteries | magnesium batteries (secondary and primary) by Gofer (2009)
  51. 10.1021/om061076s / Organometallics / Structural analysis of electrolyte solutions comprising magnesium–aluminate–chloro-organic complexes by raman spectroscopy by Vestfried (2007)
  52. 10.1149/1.1379828 / Electrochem Solid-State Lett / The study of reversible magnesium deposition by in situ scanning tunneling microscopy by Aurbach (2001)
  53. 10.1149/1.1390949 / Electrochem Solid-State Lett / Magnesium deposition and dissolution processes in ethereal grignard salt solutions using simultaneous EQCM-EIS and in situ FTIR spectroscopy by Aurbach (2000)
  54. 10.1016/S1388-2481(01)00148-5 / Electrochem Commun / Spectroelectrochemical studies of magnesium deposition by in situ FTIR spectroscopy by Aurbach (2001)
  55. 10.1016/j.jelechem.2004.09.034 / J Electroanal Chem / Microelectrode studies of reversible Mg deposition in THF solutions containing complexes of alkylaluminum chlorides and dialkylmagnesium by Viestfrid (2005)
  56. 10.1021/la026642c / Langmuir / XPS investigation of surface chemistry of magnesium electrodes in contact with organic solutions of organochloroaluminate complex salts by Gofer (2003)
  57. 10.1021/ol010048x / Org Lett / Constitution of grignard reagent RMgCl in tetrahydrofuran by Sakamoto (2001)
  58. 10.1149/1.2956022 / J Electrochem Soc / Complex structures and electrochemical properties of magnesium electrolytes by Nakayama (2008)
  59. Nakayama Yuri, Yamamoto Kenta, Kudo Yoshihiro, Oki H. Magnesium ion-containing nonaqueous electrolyte, process for producing the nonaqueous electrolyte, and electrochemical device. International PCT patent WO 2009/008232; 2010.
  60. 10.1149/1.2186003 / Electrochem Solid-State Lett / Improved electrolyte solutions for rechargeable magnesium batteries by Gofer (2006)
  61. 10.1149/1.2806175 / J Electrochem Soc / Electrolyte solutions with a wide electrochemical window for rechargeable magnesium batteries by Mizrahi (2008)
  62. 10.1021/ja1098512 / J Am Chem Soc / Structural analysis of electrolyte solutions for rechargeable Mg batteries by stereoscopic means and DFT calculations by Pour (2011)
  63. 10.1016/j.electacta.2011.04.114 / Electrochim Acta / Reversibility of electrochemical magnesium deposition from tetrahydrofuran solutions containing pyrrolidinyl magnesium halide by Zhao (2011)
  64. 10.1016/j.elecom.2010.08.015 / Electrochem Commun / Study of electronic effect of Grignard reagents on their electrochemical behavior by Guo (2010)
  65. 10.1016/j.elecom.2012.01.026 / Electrochem Commun / Electrochemical performance of novel electrolyte solutions based on organoboron magnesium salts by Guo (2012)
  66. 10.1016/j.jpowsour.2013.09.124 / J Power Sources / Halogen-free boron based electrolyte solution for rechargeable magnesium batteries by Zhu (2014)
  67. 10.1002/anie.201310317 / Angew Chem Int Ed / Boron clusters as highly stable magnesium-battery electrolytes by Carter (2014)
  68. 10.1039/c2cc35857c / Chem Commun / A novel electrolyte system without Grignard reagent for rechargeable magnisium battery by Wang (2012)
  69. 10.1039/C3TA13691D / J Mater Chem A / Highly soluble alkoxide magnesium salts for rechargeable magnesium batteries by Liao (2014)
  70. 10.1016/j.electacta.2013.12.184 / Electrochim Acta / A novel thiolate-based electrolyte system for rechargeable magnesium batteries by Bian (2014)
  71. 10.3866/PKU.WHXB201312201 / Acta Phys Chim Sin / Benzenethiolate-based solutions for rechargeable magnesium battery electrolytes by Bian (2014)
  72. 10.1039/c2ee03029b / Energy Environ Sci / Electrolyte roadblocks to a magnesium rechargeable battery by Muldoon (2012)
  73. 10.1039/c3ra43206h / RSC Adv / Bisamide based non-nucleophilic electrolytes for rechargeable magnesium batteries by Zhao-Karger (2013)
  74. 10.1016/j.ijhydene.2008.11.016 / Int J Hydrogen Energy / Magnesium borohydride as a hydrogen storage material: properties and dehydrogenation pathway of unsolvated Mg(BH4)2 by Soloveichik (2009)
  75. 10.1002/anie.201204913 / Angew Chem Int Ed / Magnesium borohydride: from hydrogen storage to magnesium battery by Mohtadi (2012)
  76. 10.1038/srep03130 / Scient Rep / Coordination chemistry in magnesium battery electrolytes: how ligands affect their performance by Yuyan (2013)
  77. 10.1039/C3RA42453G / RSC Adv. / Magnesium ion dynamics in Mg(BH4)2(1−x)X2x (X=Cl or AlH4) from first-principles molecular dynamics simulations by Ikeshoji (2014)
  78. 10.1039/C3CC47097K / Chem Commun / A novel inorganic solid state ion conductor for rechargeable Mg batteries by Higashi (2014)
  79. 10.1039/C3CC47896C / Chem Commun / Novel electrolyte solutions comprising fully inorganic salts with high anodic stability for rechargeable magnesium batteries by Doe (2014)
  80. Doe Robert Ellis, Ruoban Han, Yossef Gofer, Doron Aurbach, Nir Pour, Sterenberg E. Non-aqueous electrolyte for rechargeable magnesium ion cell. International PCT patent WO/2013/096827A1; 2013.
  81. Doe Robert Ellis, Lane George Hamilton, Jilek Robert E, Hwang J. High voltage rechargeable magnesium batteries having a non-aqueous electrolyte. US patent 20130252112; 2013.
  82. Doe Robert Ellis, Lane George Hamilton, Jilek Robert E, Hwang J. High voltage rechargeable magnesium cells having a non-aqueous electrolyte. US patent 20130252114; 2013.
  83. 10.1039/c3ta14825d / J Mater Chem A / A facile approach using MgCl2 to formulate high performance Mg2+ electrolytes for rechargeable Mg batteries by Liu (2014)
  84. 10.1039/c3ee43143f / Energy Environ Sci / Metal-organic frameworks as solid magnesium electrolytes by Aubrey (2014)
  85. 10.1016/j.eurpolymj.2005.09.017 / Eur Polym J / Review on gel polymer electrolytes for lithium batteries by Manuel Stephan (2006)
  86. 10.1016/0032-3861(93)90227-2 / Polymer / Cationic conductivity and relaxation processes in solid polymer electrolytes with lithium perfluoroalkyl sulfonate or sulfonato end-capped poly(ethylene oxide) by Hamaide (1993)
  87. Gozdz AS, Schmutz CN, Tarascon JM, Warren PC. Method of making an electrolyte activatable lithium-ion rechargeable battery cell. US patent 5,456,000; 1995.
  88. Gozdz AS, Tarascon JM, Warren PC. Electrolyte activatable lithium-ion rechargeable battery cell. US patent 5,460,904; 1995.
  89. 10.1016/0167-2738(96)00330-X / Solid State Ionics / Performance of Bellcore’s plastic rechargeable Li-ion batteries by Tarascon (1996)
  90. 10.1016/S0378-7753(01)00603-6 / J Power Sources / The status of Sony Li-ion polymer battery by Kezuka (2001)
  91. 10.1016/0167-2738(86)90309-7 / Solid State Ionics / Novel solid state polymeric batteries by Patrick (1986)
  92. 10.1016/S0378-7753(12)80001-2 / J Power Sources / Factors affecting the conductivity of divalent polymeric electrolytes by Martins (1990)
  93. 10.1149/1.2108891 / J Electrochem Soc / Ionic conductivity in complexes of poly(ethylene oxide) and MgCl2 by Yang (1986)
  94. 10.1016/S0013-4686(97)00123-0 / Electrochim Acta / Synthesis and characterization of polymeric electrolytes for solid state magnesium batteries by Acosta (1997)
  95. 10.1016/S0013-4686(97)10026-3 / Electrochim Acta / A novel type of magnesium ion conducting polymer electrolyte by Liebenow (1998)
  96. 10.1007/s10008-003-0356-1 / J Solid State Electrochem / Preparation of solutions of amidomagnesium chlorides in poly(ethylene oxide) and their characterization by conductivity measurements by Liebenow (2003)
  97. 10.1016/S0022-0728(00)00404-6 / J Electroanal Chem / Effect of plasticizers on magnesium-poly(ethyleneoxide) polymer electrolyte by Girish Kumar (2000)
  98. 10.1016/S0013-4686(98)00388-0 / Electrochim Acta / Reversibility of Mg/Mg2+ couple in a gel polymer electrolyte by Kumar (1999)
  99. 10.1016/S0167-2738(00)00276-9 / Solid State Ionics / A gel polymer electrolyte of magnesium triflate by Kumar (2000)
  100. 10.1016/S0378-7753(00)00462-6 / J Power Sources / Solid-state Mg/MnO2 cell employing a gel polymer electrolyte of magnesium triflate by Kumar (2000)
  101. 10.1016/S0378-7753(01)00772-8 / J Power Sources / Solid-state rechargeable magnesium cell with poly(vinylidenefluoride)–magnesium triflate gel polymer electrolyte by Girish Kumar (2001)
  102. 10.1016/S0013-4686(01)00832-5 / Electrochim Acta / Poly(methylmethacrylate)—magnesium triflate gel polymer electrolyte for solid state magnesium battery application by Girish Kumar (2002)
  103. 10.1002/app.29877 / J Appl Polym Sci / Polyvinylidene fluoride-based novel polymer electrolytes for magnesium-rechargeable batteries with Mg(CF3SO3)2 by Aravindan (2009)
  104. {'key': '10.1016/j.pmatsci.2014.04.001_b0520', 'first-page': '014035', 'article-title': 'The influence of the cations of salts on the electrochemical stability of a solid polymer electrolyte based on segmented poly(ether urethane)', 'volume': '2010', 'author': 'Nam-Ju', 'year': '2010', 'journal-title': 'Phys Scr'} / Phys Scr / The influence of the cations of salts on the electrochemical stability of a solid polymer electrolyte based on segmented poly(ether urethane) by Nam-Ju (2010)
  105. 10.1016/S0013-4686(00)00705-2 / Electrochim Acta / Ionic conductance of polymeric electrolytes consisting of magnesium salts dissolved in cross-linked polymer matrix with linear polyether by Yoshimoto (2001)
  106. 10.1149/1.1403195 / Electrochem Solid-State Lett / Rechargeable magnesium batteries using a novel polymeric solid electrolyte by Morita (2001)
  107. 10.1016/S0167-2738(02)00308-9 / Solid State Ionics / Ionic conductance behavior of polymeric electrolytes containing magnesium salts and their application to rechargeable batteries by Yoshimoto (2002)
  108. 10.1016/S0167-2738(99)00028-4 / Solid State Ionics / Multivalent cation conductive solid polymer electrolytes using photo-cross-linked polymers: II. Magnesium and zinc trifluoromethanesulfonate systems by Ikeda (1999)
  109. 10.1016/S0013-4686(03)00221-4 / Electrochim Acta / Rechargeable magnesium batteries with polymeric gel electrolytes containing magnesium salts by Yoshimoto (2003)
  110. 10.1016/j.jpowsour.2004.07.028 / J Power Sources / Ionic conductance behavior of polymeric gel electrolyte containing ionic liquid mixed with magnesium salt by Morita (2005)
  111. 10.1016/j.electacta.2005.02.036 / Electrochim Acta / A novel polymeric gel electrolyte systems containing magnesium salt with ionic liquid by Yoshimoto (2005)
  112. 10.1016/j.jpowsour.2009.10.073 / J Power Sources / Mixed electrolyte consisting of ethylmagnesiumbromide with ionic liquid for rechargeable magnesium electrode by Yoshimoto (2010)
  113. 10.1016/j.jpowsour.2011.10.127 / J Power Sour / Binary ionic liquid electrolytes containing organo-magnesium complex for rechargeable magnesium batteries by Kakibe (2012)
  114. 10.1016/j.elecom.2010.09.012 / Electrochem Commun / Optimization of cation structure of imidazolium-based ionic liquids as ionic solvents for rechargeable magnesium batteries by Kakibe (2010)
  115. 10.1016/j.jpowsour.2010.08.060 / J Power Sources / Electrochemical co-deposition of magnesium with lithium from quaternary ammonium-based ionic liquid by Shimamura (2011)
  116. 10.1149/1.3280006 / Electrochem Solid-State Lett / Electrochemical codeposition of magnesium-based alloys from dimethylformamide solutions at room temperature by Liu (2010)
  117. 10.1016/j.elecom.2005.07.013 / Electrochem Commun / Reversible deposition and dissolution of magnesium from BMIMBF4 ionic liquid by NuLi (2005)
  118. 10.1016/j.apsusc.2005.10.022 / Appl Surf Sci / Electrodeposition of magnesium film from BMIMBF4 ionic liquid by NuLi (2006)
  119. 10.1149/1.2052048 / Electrochem Solid-State Lett / Electrochemical magnesium deposition and dissolution with high efficiency in ionic liquid by NuLi (2005)
  120. 10.1016/j.surfcoat.2006.03.020 / Surf Coat Technol / Mixed ionic liquids as electrolyte for reversible deposition and dissolution of magnesium by Wang (2006)
  121. 10.1149/1.2804763 / J Electrochem Soc / Studies on the electrodeposition of magnesium in ionic liquids by Cheek (2008)
  122. 10.1149/1.1838204 / J Electrochem Soc / Anodization and speciation of magnesium in chloride-rich room temperature ionic liquids by Fuller (1998)
  123. 10.1016/j.jpowsour.2007.06.206 / J Power Sources / Progress in nonaqueous magnesium electrochemistry by Amir (2007)
  124. 10.1016/j.electacta.2004.01.099 / Electrochim Acta / Preparation and characterization of gel polymer electrolytes for solid state magnesium batteries by Oh (2004)
  125. 10.1016/j.elecom.2009.08.045 / Electrochem Commun / Magnesium ion conducting, room temperature molten electrolytes by Venkata Narayanan (2009)
  126. 10.1016/j.jpowsour.2010.01.070 / J Power Sources / Physicochemical, spectroscopic and electrochemical characterization of magnesium ion-conducting, room temperature, ternary molten electrolytes by Narayanan (2010)
  127. 10.1016/j.jpowsour.2008.09.046 / J Power Sources / A high voltage magnesium battery based on H2SO4-doped (PVA)0.7(NaBr)0.3 solid polymer electrolyte by Sheha (2008)
  128. 10.1016/j.ssi.2009.10.008 / Solid State Ionics / Ionic conductivity and dielectric properties of plasticized PVA0.7(LiBr)0.3(H2SO4)2.7M solid acid membrane and its performance in a magnesium battery by Sheha (2009)
  129. {'key': '10.1016/j.pmatsci.2014.04.001_b0645', 'article-title': 'Influence of PEG-borate ester as a lewis acid on ionic conductivity of polymer electrolyte containing Mg-salt', 'volume': '150', 'author': 'Saito', 'year': '2003', 'journal-title': 'J Electrochem Soc'} / J Electrochem Soc / Influence of PEG-borate ester as a lewis acid on ionic conductivity of polymer electrolyte containing Mg-salt by Saito (2003)
  130. {'key': '10.1016/j.pmatsci.2014.04.001_b0650', 'article-title': 'Investigation of the effect of lewis acid on ionic conductivity of polymer electrolyte containing Mg salt', 'volume': '150', 'author': 'Saito', 'year': '2003', 'journal-title': 'J Electrochem Soc'} / J Electrochem Soc / Investigation of the effect of lewis acid on ionic conductivity of polymer electrolyte containing Mg salt by Saito (2003)
  131. 10.1016/j.jpowsour.2008.10.112 / J Power Sources / Experimental investigations of an ionic-liquid-based, magnesium ion conducting, polymer gel electrolyte by Pandey (2009)
  132. 10.1002/app.32051 / J Appl Polym Sci / Structural, morphological, thermal, and conductivity studies of magnesium ion conducting P(VdF-HFP)-based solid polymer electrolytes with good prospects by Ramesh (2010)
  133. 10.1016/j.jpcs.2011.08.003 / J Phys Chem Solids / Performance studies on composite gel polymer electrolytes for rechargeable magnesium battery application by Pandey (2011)
  134. 10.1007/s10008-010-1240-4 / J Solid State Electrochem / Magnesium ion-conducting gel polymer electrolytes dispersed with fumed silica for rechargeable magnesium battery application by Pandey (2011)
  135. 10.1007/s11581-006-0048-9 / Ionics / Effect of fillers on magnesium-poly(ethylene oxide) solid polymer electrolyte by Sundar (2006)
  136. 10.1007/s10008-012-1656-0 / J Solid State Electrochem / Electrical and electrochemical studies on magnesium ion-based polymer gel electrolytes by Tripathi (2012)
  137. 10.1016/j.electacta.2011.02.035 / Electrochim Acta / Ionic liquid mediated magnesium ion conduction in poly(ethylene oxide) based polymer electrolyte by Kumar (2011)
  138. 10.1016/j.ssi.2011.03.018 / Solid State Ionics / Ionic liquid incorporated PEO based polymer electrolyte for electrical double layer capacitors: a comparative study with lithium and magnesium systems by Pandey (2011)
  139. 10.1016/j.electacta.2011.06.045 / Electrochim Acta / Preparation and characterization of magnesium ion gel polymer electrolytes for application in electrical double layer capacitors by Asmara (2011)
  140. {'key': '10.1016/j.pmatsci.2014.04.001_b0700', 'series-title': 'Industrial applications of batteries', 'first-page': '119', 'article-title': 'Chapter 3 – characterization of batteries by electrochemical and non-electrochemical techniques', 'author': 'Aurbach', 'year': '2007'} / Industrial applications of batteries / Chapter 3 – characterization of batteries by electrochemical and non-electrochemical techniques by Aurbach (2007)
  141. 10.1149/1.2039587 / J Electrochem Soc / Current collectors for positive electrodes of lithium-based batteries by Whitehead (2005)
  142. 10.1149/1.2234735 / J Electrochem Soc / Study of key factors influencing electrochemical reversibility of magnesium deposition and dissolution by Feng (2006)
  143. 10.1149/2.085302jes / J Electrochem Soc / A scientific study of current collectors for Mg batteries in Mg(AlCl2EtBu)2/THF electrolyte by Lv (2013)
  144. 10.1179/147842204225016859 / Corros Eng, Sci Technol / Origins of pitting corrosion by Burstein (2004)
  145. 10.1149/1.1379828 / Electrochem Solid State Lett / The study of reversible magnesium deposition by in situ scanning tunneling microscopy by Aurbach (2001)
  146. 10.1149/2.033303jes / J Electrochem Soc / Electrochemical stability of magnesium battery current collectors in a grignard reagent-based electrolyte by Yagi (2013)
  147. 10.1149/2.004202eel / ECS Electrochem Lett / Electrochemical stability of metal electrodes for reversible magnesium deposition/dissolution in tetrahydrofuran dissolving ethylmagnesium chloride by Yagi (2012)
  148. 10.1016/j.electacta.2012.10.015 / Electrochim Acta / Electrochemical behavior of aluminum in Grignard reagents/THF electrolytic solutions for rechargeable magnesium batteries by Cheng (2013)
  149. 10.1039/c2ee22509c / Energy Environ Sci / Boron-based electrolyte solutions with wide electrochemical windows for rechargeable magnesium batteries by Guo (2012)
  150. 10.1039/C2EE23686A / Energy Environ Sci / Corrosion of magnesium electrolytes: chlorides – the culprit by Muldoon (2013)
  151. 10.1039/C3TA15113A / J Mater Chem A / Electrochemically stable cathode current collectors for rechargeable magnesium batteries by Cheng (2014)
  152. 10.1021/cm900033v / Chem Mater / New insight on the unusually high ionic mobility in Chevrel phases by Levi (2009)
  153. 10.1021/cm061656f / Chem Mater / Phase diagram of mg insertion into chevrel phases, MgxMo6T8 (T=S, Se). 1. crystal structure of the sulfides by Levi (2006)
  154. 10.1007/s10832-007-9370-5 / J Electroceram / A review on the problems of the solid state ions diffusion in cathodes for rechargeable Mg batteries by Levi (2009)
  155. 10.1021/cm060715m / Chem Mater / Phase diagram of Mg insertion into chevrel phases, MgxMo6T8 (T=S, Se). 2. The crystal structure of triclinic MgMo6Se8 by Levi (2006)
  156. 10.1021/ic702311f / Inorg Chem / Phase diagram of mg insertion into Chevrel phases, MgxMo6T8 (T=S, Se). 3. The crystal structure of triclinic Mg2Mo6Se8 by Levi (2008)
  157. 10.1103/PhysRevB.54.11169 / Phys Rev B / Efficient iterative schemes for ab initio total-energy calculations using a plane-wave basis set by Kresse (1996)
  158. 10.1016/0927-0256(96)00008-0 / Comput Mater Sci / Efficiency of ab-initio total energy calculations for metals and semiconductors using a plane-wave basis set by Kresse (1996)
  159. 10.1103/PhysRevB.59.1758 / Phys Rev B / From ultrasoft pseudopotentials to the projector augmented-wave method by Kresse (1999)
  160. 10.1103/PhysRevB.33.8800 / Phys Rev B / Accurate and simple density functional for the electronic exchange energy: generalized gradient approximation by Perdew (1986)
  161. 10.1103/PhysRevB.67.104103 / Phys Rev B / Voltage profile, structural prediction, and electronic calculations for MgxMo6S8 by Kganyago (2003)
  162. 10.1016/0025-5408(94)90047-7 / Mater Res Bull / Recent progress in chevrel phase syntheses: a new low temperature synthesis of the superconducting lead compound by Rabiller (1994)
  163. 10.1016/j.jssc.2006.02.032 / J Solid State Chem / Molten salt synthesis (MSS) Of Cu2Mo6S8-new way for large-scale production of Chevrel phases by Lancry (2006)
  164. 10.1021/cm034944+ / Chem Mater / Leaching chemistry and the performance of the Mo6S8 cathodes in rechargeable Mg batteries by Lancry (2004)
  165. 10.5012/bkcs.2013.34.10.3033 / Bull Korean Chem Soc / Size-controlled Chevrel Mo S as cathode material for Mg rechargeable battery by Ryu (2013)
  166. 10.1016/j.jssc.2012.01.016 / J Solid State Chem / Ultra fast elemental synthesis of high yield copper Chevrel phase with high electrochemical performance by Gershinsky (2012)
  167. 10.1039/C3CC47896C / Chem Commun / Novel, electrolyte solutions comprising fully inorganic salts with high anodic stability for rechargeable magnesium batteries by Doe (2014)
  168. 10.1149/2.061404jes / J Electrochem Soc / A convenient approach to Mo6S8 Chevrel phase cathode for rechargeable magnesium battery by Saha (2014)
  169. 10.1021/ic00272a028 / Inorg Chem / Convenient synthesis of the Chevrel phases metal molybdenum sulfide, MxMo6S8 (M=copper, lead, lanthanum or gadolinium) by Nanjundaswamy (1987)
  170. 10.1021/ic00146a020 / Inorg Chem / Facile syntheses of new molybdenum and tungsten sulfido complexes. Structure of Mo3S92− by Pan (1983)
  171. 10.1149/1.1758811 / J Electrochem Soc / Kinetic and thermodynamic studies of Mg2+ and Li+ ion insertion into the Mo6S8 Chevrel phase by Levi (2004)
  172. 10.1016/j.jelechem.2004.03.004 / J Electroanal Chem / A comparative study of Mg2+ and Li+ ion insertions into the Mo6S8 Chevrel phase using electrochemical impedance spectroscopy by Levi (2004)
  173. 10.1016/j.jpowsour.2005.03.014 / J. Power Sources / A comparison between intercalation of Li and Mg ions into the model Chevrel phase compound (MxMo6S8): Impedance spectroscopic studies by Levi (2005)
  174. 10.1021/cm021122o / Chem Mater / Cu2Mo6S8 Chevrel phase, a promising cathode material for new rechargeable mg batteries: a mechanically induced chemical reaction by Levi (2002)
  175. 10.1007/s10008-005-0060-4 / J Solid State Electrochem / The crystal structure of the inorganic surface films formed on Mg and Li intercalation compounds and the electrode performance by Levi (2006)
  176. 10.1039/b710743a / Chem Commun / New cathode materials for rechargeable Mg batteries: fast Mg ion transport and reversible copper extrusion in CuMo6S8 compounds by Mitelman (2007)
  177. 10.1006/jssc.1996.0186 / J Solid State Chem / Crystal structure of the product of Mg2+ insertion into V2O5 single crystals by Shklover (1996)
  178. 10.1016/0022-0728(87)87019-5 / J Electroanal Chem Interfacial Electrochem / Electrochemical formation of a magnesium vanadium bronze MgxV2O5 in sulfone-based electrolytes at 150°C by Pereira-Ramos (1987)
  179. 10.1149/1.2056075 / J Electrochem Soc / Electrochemical insertion of magnesium in metal oxides and sulfides from aprotic electrolytes by Novak (1993)
  180. 10.1149/1.2050051 / J Electrochem Soc / Electrochemical insertion of magnesium into hydrated vanadium bronzes by Novák (1995)
  181. 10.1016/0378-7753(94)02129-Q / J Power Sources / Magnesium insertion batteries – an alternative to lithium? by Novák (1995)
  182. {'key': '10.1016/j.pmatsci.2014.04.001_b0910', 'first-page': '1399', 'article-title': 'Study of MgV2O6 as cathode material for secondary magnesium batteries', 'volume': '23', 'author': 'Sun', 'year': '2011', 'journal-title': 'Asian J Chem'} / Asian J Chem / Study of MgV2O6 as cathode material for secondary magnesium batteries by Sun (2011)
  183. 10.1021/cm9705101 / Chem Mater / Intercalation of polyvalent cations into V2O5 aerogels by Le (1998)
  184. 10.5796/electrochemistry.80.421 / Electrochemistry / Electrode performance of vanadium pentoxide xerogel prepared by microwave irradiation as an active cathode material for rechargeable magnesium batteries by Inamoto (2012)
  185. 10.1149/1.1571531 / J Electrochem Soc / Mg intercalation properties into V2O5 gel/carbon composites under high-rate condition by Imamura (2003)
  186. 10.1016/j.jpowsour.2005.06.004 / J Power Sources / Electrochemical insertion of magnesium in open-ended vanadium oxide nanotubes by Jiao (2006)
  187. 10.1016/j.elecom.2006.03.043 / Electrochem Commun / Synthesis of Cu0.1-doped vanadium oxide nanotubes and their application as cathode materials for rechargeable magnesium batteries by Jiao (2006)
  188. 10.1016/j.jcis.2004.05.028 / J Colloid Interface Sci / Electrochemical insertion of magnesium ions into V2O5 from aprotic electrolytes with varied water content by Yu (2004)
  189. 10.1021/la402391f / Langmuir / Electrochemical and spectroscopic analysis of Mg2+ intercalation into thin film electrodes of layered oxides: V2O5 and MoO3 by Gershinsky (2013)
  190. Doe Robert Ellis, Downie Craig Michael, Fischer Christopher, Lane George Hamilton, Morgan Dane, Nevin Josh, et al. Layered materials with improved magnesium intercalation for rechargeable magnesium ion cells. US Patent 20130260238; 2013.
  191. Doe Robert Ellis, Downie Craig Michael, Fischer Christopher, Lane George Hamilton, Morgan Dane, Nevin Josh, et al. Layered materials with improved magnesium intercalation for rechargeable magnesium ion cells. US Patent 20140106214; 2014.
  192. 10.1039/jm9910100705 / J Mater Chem / Chemical intercalation of magnesium into solid hosts by Bruce (1991)
  193. 10.1016/0167-2738(92)90399-A / Solid State Ionics / Multivalent cation intercalation by Bruce (1992)
  194. Doe Robert E, Mueller Timothy K, Ceder Gerbrand, Barker Jeremy, Persson Kristin A. Electrode materials for magnesium batteries. US patent 20120219856; 2012.
  195. 10.1016/0378-7753(94)02099-O / J Power Sources / Electrochemical insertion of lithium, sodium, and magnesium in molybdenum(VI) oxide by Spahr (1995)
  196. 10.1016/0167-2738(92)90237-J / Solid State Ionics / The insertion of magnesium into a-U3O8 by Dueber (1992)
  197. 10.1016/S0378-7753(01)00480-3 / J Power Sources / Electrochemical insertion of magnesium to Mg0.5Ti2(PO4)3 by Makino (2001)
  198. 10.1016/S0378-7753(02)00345-2 / J Power Sources / Preparation and electrochemical magnesium insertion behaviors of Mg0.5+y(MeyTi1−y)2(PO4)3 (Me=Cr, Fe) by Makino (2002)
  199. 10.1016/S0378-7753(01)00694-2 / J Power Sources / Magnesium insertion into Mg0.5+y(FeyTi1−y)2(PO4)3 by Makino (2001)
  200. 10.1246/cl.2008.376 / Chem Lett / Preparation of cathode active material for rechargeable magnesium battery by atmospheric pressure microwave discharge using carbon felt pieces by Kurihara (2008)
  201. 10.2320/matertrans.MBW200721 / Mater Trans / Synthesis of spinel-type magnesium cobalt oxide and its electrical conductivity by Kamioka (2008)
  202. 10.1039/c1jm11793a / J Mater Chem / Potential positive electrodes for high-voltage magnesium-ion batteries by Ichitsubo (2011)
  203. 10.1016/j.elecom.2012.07.021 / Electrochem Commun / α-MnO2 as a cathode material for rechargeable Mg batteries by Zhang (2012)
  204. Song Wei, Arthur Timothy Sean, Bucur Claudiu, Matsui Masaki, Muldoon John, Singh Nikhilendra, et al. High voltage rechargeable magnesium cell. US Patent 20130004830; 2013.
  205. 10.1016/S0378-7753(99)00106-8 / J Power Sources / Jahn-Teller instability in spinel Li–Mn–O by Yamada (1999)
  206. 10.1016/j.ssi.2012.01.019 / Solid State Ionics / Synthesis and electrochemical behavior of hollandite MnO2/acetylene black composite cathode for secondary Mg-ion batteries by Rasul (2012)
  207. 10.1016/j.electacta.2012.03.095 / Electrochim Acta / High capacity positive electrodes for secondary Mg-ion batteries by Rasul (2012)
  208. 10.1016/j.electacta.2013.06.094 / Electrochim Acta / Manganese oxide octahedral molecular sieves as insertion electrodes for rechargeable Mg batteries by Rasul (2013)
  209. Saha P, Jampani PH, Datta MK, Beck F, Hong DH, Poston JA, Manivannan A, et al. Synthesis and electrochemical study of Mg1.5MnO3: a defect spinel cathode for secondary magnesium battery. Scripta Mater [submitted for publication].
  210. 10.1063/1.3489094 / Appl Phys Lett / Synthesis and magnetic properties of nanocrystals of cubic defect spinel MgMnO3 by Seehra (2010)
  211. 10.2138/am-1998-3-414 / Am Mineral / Interpretation of XPS Mn(2p) spectra of Mn oxyhydroxides and constraints on the mechanism of MnO2 precipitation by Nesbitt (1998)
  212. 10.1016/j.jpowsour.2008.05.021 / J Power Sources / Sol-gel synthesis of Mg1.03Mn0.97SiO4 and its electrochemical intercalation behavior by Feng (2008)
  213. 10.1016/j.elecom.2008.06.021 / Electrochem Commun / Preparation and electrochemical study of a new magnesium intercalation material Mg1.03Mn0.97SiO4 by Feng (2008)
  214. 10.1021/jp903188b / J Phys Chem C / Electrochemical intercalation of Mg2+ in magnesium manganese silicate and its application as high-energy rechargeable magnesium battery cathode by Nuli (2009)
  215. 10.1007/s11434-010-4247-4 / Chin Sci Bull / MgFeSiO4 prepared via a molten salt method as a new cathode material for rechargeable magnesium batteries by Li (2011)
  216. 10.1007/s00706-013-0977-8 / Monatsh Chem / Preparation and characterization of novel positive electrode material for magnesium cells by J-z (2014)
  217. 10.1039/c1jm10485c / J Mater Chem / Electrochemical intercalation of Mg2+ in 3D hierarchically porous magnesium cobalt silicate and its application as an advanced cathode material in rechargeable magnesium batteries by NuLi (2011)
  218. 10.1016/j.electacta.2012.01.037 / Electrochim Acta / Magnesium cobalt silicate materials for reversible magnesium ion storage by Zheng (2012)
  219. 10.1039/c2jm31122d / J Mater Chem / First-principles study of the magnesiation of olivines: redox reaction mechanism, electrochemical and thermodynamic properties by Ling (2012)
  220. 10.1149/1.1383777 / J Electrochem Soc / Investigation of yttrium and polyvalent ion intercalation into nanocrystalline vanadium oxide by Amatucci (2001)
  221. 10.1039/b403855j / Chem Commun / TiS2 nanotubes as the cathode materials of Mg-ion batteries by Tao (2004)
  222. 10.1016/S0378-7753(01)00585-7 / J Power Sources / A short review on the comparison between Li battery systems and rechargeable magnesium battery technology by Aurbach (2001)
  223. 10.1021/nn4032454 / ACS Nano / Rechargeable Mg-ion batteries based on WSe2 nanowire cathodes by Liu (2013)
  224. 10.1155/2014/107918 / Scient World J / Carbyne polysulfide as a novel cathode material for rechargeable magnesium batteries by NuLi (2014)
  225. 10.1021/jp0367575 / J Phys Chem B / MoS2 nanostructures: synthesis and electrochemical Mg2+ intercalation by Li (2004)
  226. 10.1021/jp2097026 / J Phys Chem C / First-principles study of zigzag MoS2 nanoribbon as a promising cathode material for rechargeable Mg batteries by Yang (2012)
  227. 10.1002/adma.201003560 / Adv Mater / Rechargeable Mg batteries with graphene-like MoS2 cathode and ultrasmall Mg nanoparticle anode by Liang (2011)
  228. 10.1039/c3nr02850j / Nanoscale / Synthesis of rGO-supported layered MoS2 for high-performance rechargeable Mg batteries by Jiao (2013)
  229. 10.1039/c3ta10786h / J Mater Chem A / Sandwich-structured graphene-like MoS2/C microspheres for rechargeable Mg batteries by Liu (2013)
  230. 10.1016/j.jpowsour.2013.01.114 / J Power Sources / In search of high performance anode materials for Mg batteries: computational studies of Mg in Ge, Si, and Sn by Malyi (2013)
  231. 10.1016/j.nanoen.2013.04.007 / Nano Energy / A computational study of the insertion of Li, Na, and Mg atoms into Si(111) nanosheets by Malyi (2013)
  232. 10.1039/C2CC34673G / Chem Commun / A high energy-density tin anode for rechargeable magnesium-ion batteries by Singh (2013)
  233. Singh Nikhilendra, Arthur Timothy Sean, Ling Chen, Matsui Masaki, Mizuno Fuminori. Active material for rechargeable battery. US Patent 20130266851; 2013.
  234. 10.1016/j.elecom.2011.12.010 / Electrochem Commun / Electrodeposited Bi, Sb and Bi1−xSbx alloys as anodes for Mg-ion batteries by Arthur (2012)
  235. 10.1021/nl403874y / Nano Lett / Highly reversible Mg insertion in nanostructured Bi for Mg ion batteries by Shao (2013)
  236. 10.1002/1439-7641(20020215)3:2<155::AID-CPHC155>3.0.CO;2-S / ChemPhysChem / Advances in battery technology: rechargeable magnesium batteries and novel negative-electrode materials for lithium ion batteries by Besenhard (2002)
  237. 10.1002/anie.201204913 / Angew Chem / Magnesium borohydride: from hydrogen storage to magnesium battery by Mohtadi (2012)
  238. 10.1016/j.ssi.2007.12.070 / Solid State Ionics / A review on the solid-state ionics of electrochemical intercalation processes: how to interpret properly their electrochemical response by Aurbach (2008)
  239. 10.1016/j.ssi.2005.04.019 / Solid State Ionics / The effect of the anionic framework of Mo6X8 Chevrel phase (X=S, Se) on the thermodynamics and the kinetics of the electrochemical insertion of Mg2+ ions by Levi (2005)
Dates
Type When
Created 11 years, 3 months ago (May 10, 2014, 9:33 a.m.)
Deposited 5 years ago (Aug. 19, 2020, 12:20 a.m.)
Indexed 54 minutes ago (Aug. 27, 2025, 12:21 a.m.)
Issued 10 years, 10 months ago (Oct. 1, 2014)
Published 10 years, 10 months ago (Oct. 1, 2014)
Published Print 10 years, 10 months ago (Oct. 1, 2014)
Funders 0

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@article{Saha_2014, title={Rechargeable magnesium battery: Current status and key challenges for the future}, volume={66}, ISSN={0079-6425}, url={http://dx.doi.org/10.1016/j.pmatsci.2014.04.001}, DOI={10.1016/j.pmatsci.2014.04.001}, journal={Progress in Materials Science}, publisher={Elsevier BV}, author={Saha, Partha and Datta, Moni Kanchan and Velikokhatnyi, Oleg I. and Manivannan, Ayyakkannu and Alman, David and Kumta, Prashant N.}, year={2014}, month=oct, pages={1–86} }