Crossref
journal-article
Springer Science and Business Media LLC
Nature Communications (297)
References
42
Referenced
1,389
-
Whittingham, M. S. Electrical energy storage and intercalation chemistry. Science 192, 1126–1127 (1976).
(
10.1126/science.192.4244.1126
) / Science by MS Whittingham (1976) -
Peled, E. The electrochemical behavior of alkali and alkaline earth metals in nonaqueous battery systems-the solid electrolyte interphase model. J. Electrochem. Soc. 126, 2047–2051 (1979).
(
10.1149/1.2128859
) / J. Electrochem. Soc. by E Peled (1979) -
Yamaki, J.-I. et al. A consideration of the morphology of electrochemically deposited lithium in an organic electrolyte. J. Power Sources 74, 219–227 (1998).
(
10.1016/S0378-7753(98)00067-6
) / J. Power Sources by J-I Yamaki (1998) -
Aurbach, D. et al. Attempts to improve the behavior of Li electrodes in rechargeable lithium batteries. J. Electrochem. Soc. 149, A1267–A1277 (2002).
(
10.1149/1.1502684
) / J. Electrochem. Soc. by D Aurbach (2002) -
Kim, H. et al. Metallic anodes for next generation secondary batteries. Chem. Soc. Rev. 42, 9011–9034 (2013).
(
10.1039/c3cs60177c
) / Chem. Soc. Rev. by H Kim (2013) -
Harry, K. J., Hallinan, D. T., Parkinson, D. Y., MacDowell, A. A. & Balsara, N. P. Detection of subsurface structures underneath dendrites formed on cycled lithium metal electrodes. Nat. Mater. 13, 69–73 (2014).
(
10.1038/nmat3793
) / Nat. Mater. by KJ Harry (2014) -
Armand, M. & Tarascon, J. M. Building better batteries. Nature 451, 652–657 (2008).
(
10.1038/451652a
) / Nature by M Armand (2008) -
Tarascon, J. M. & Armand, M. Issues and challenges facing rechargeable lithium batteries. Nature 414, 359–367 (2001).
(
10.1038/35104644
) / Nature by JM Tarascon (2001) -
Bruce, P. G., Freunberger, S. A., Hardwick, L. J. & Tarascon, J.-M. Li-O2 and Li-S batteries with high energy storage. Nat. Mater. 11, 19–29 (2012).
(
10.1038/nmat3191
) / Nat. Mater. by PG Bruce (2012) -
Chu, S. & Majumdar, A. Opportunities and challenges for a sustainable energy future. Nature 488, 294–303 (2012).
(
10.1038/nature11475
) / Nature by S Chu (2012) -
Aurbach, D., Zinigrad, E., Cohen, Y. & Teller, H. A short review of failure mechanisms of lithium metal and lithiated graphite anodes in liquid electrolyte solutions. Solid State Ionics 148, 405–416 (2002).
(
10.1016/S0167-2738(02)00080-2
) / Solid State Ionics by D Aurbach (2002) -
Xu, W. et al. Lithium metal anodes for rechargeable batteries. Energy Environ. Sci. 7, 513–537 (2014).
(
10.1039/C3EE40795K
) / Energy Environ. Sci. by W Xu (2014) -
Gireaud, L., Grugeon, S., Laruelle, S., Yrieix, B. & Tarascon, J. M. Lithium metal stripping/plating mechanisms studies: a metallurgical approach. Electrochem. Commun. 8, 1639–1649 (2006).
(
10.1016/j.elecom.2006.07.037
) / Electrochem. Commun. by L Gireaud (2006) -
Croce, F., Appetecchi, G. B., Persi, L. & Scrosati, B. Nanocomposite polymer electrolytes for lithium batteries. Nature 394, 456–458 (1998).
(
10.1038/28818
) / Nature by F Croce (1998) -
Kamaya, N. et al. A lithium superionic conductor. Nat. Mater. 10, 682–686 (2011).
(
10.1038/nmat3066
) / Nat. Mater. by N Kamaya (2011) -
Bouchet, R. et al. Single-ion BAB triblock copolymers as highly efficient electrolytes for lithium-metal batteries. Nat. Mater. 12, 452–457 (2013).
(
10.1038/nmat3602
) / Nat. Mater. by R Bouchet (2013) -
Stone, G. M. et al. Resolution of the modulus versus adhesion dilemma in solid polymer electrolytes for rechargeable lithium metal batteries. J. Electrochem. Soc. 159, A222–A227 (2012).
(
10.1149/2.030203jes
) / J. Electrochem. Soc. by GM Stone (2012) -
Yu, X., Bates, J. B., Jellison, G. E. & Hart, F. X. A stable thin-film lithium electrolyte: lithium phosphorus oxynitride. J. Electrochem. Soc. 144, 524–532 (1997).
(
10.1149/1.1837443
) / J. Electrochem. Soc. by X Yu (1997) - Nimon, Y. S., Chu, M. -Y. & Visco, S. J. Coated lithium electrodes. US patent US6537701 B1, (2003).
-
Tu, Z., Kambe, Y., Lu, Y. & Archer, L. A. Nanoporous polymer-ceramic composite electrolytes for lithium metal batteries. Adv. Energy Mater. 4, 1300654 (2014).
(
10.1002/aenm.201300654
) / Adv. Energy Mater. by Z Tu (2014) -
Hirai, T., Yoshimatsu, I. & Yamaki, J. -I. Effect of additives on lithium cycling efficiency. J. Electrochem. Soc. 141, 2300–2305 (1994).
(
10.1149/1.2055116
) / J. Electrochem. Soc. by T Hirai (1994) -
Shiraishi, S., Kanamura, K. & Takehara, Z. Surface condition changes in lithium metal deposited in nonaqueous electrolyte containing HF by dissolution-deposition cycles. J. Electrochem. Soc. 146, 1633–1639 (1999).
(
10.1149/1.1391818
) / J. Electrochem. Soc. by S Shiraishi (1999) -
Ota, H., Shima, K., Ue, M. & Yamaki, J. Effect of vinylene carbonate as additive to electrolyte for lithium metal anode. Electrochim. Acta 49, 565–572 (2004).
(
10.1016/j.electacta.2003.09.010
) / Electrochim. Acta by H Ota (2004) -
Lee, Y. M. et al. Effects of triacetoxyvinylsilane as SEI layer additive on electrochemical performance of lithium metal secondary battery. Electrochem. Solid State Lett. 10, A216–A219 (2007).
(
10.1149/1.2750439
) / Electrochem. Solid State Lett. by YM Lee (2007) -
Crowther, O. & West, A. C. Effect of electrolyte composition on lithium dendrite growth. J. Electrochem. Soc. 155, A806–A811 (2008).
(
10.1149/1.2969424
) / J. Electrochem. Soc. by O Crowther (2008) -
Lu, Y., Korf, K., Kambe, Y., Tu, Z. & Archer, L. A. Ionic-liquid–nanoparticle hybrid electrolytes: applications in lithium metal batteries. Angew Chem. Int. Ed. 7, 488–492 (2014).
(
10.1002/anie.201307137
) / Angew Chem. Int. Ed. by Y Lu (2014) -
Lu, Y., Das, S. K., Moganty, S. S. & Archer, L. A. Ionic liquid-nanoparticle hybrid electrolytes and their application in secondary lithium-metal batteries. Adv. Mater. 24, 4430–4435 (2014).
(
10.1002/adma.201201953
) / Adv. Mater. by Y Lu (2014) -
Lu, Y., Tu, Z. & Archer, L. A. Stable lithium electrodeposition in liquid and nanoporous solid electrolytes. Nat. Mater. 13, 961–969 (2014).
(
10.1038/nmat4041
) / Nat. Mater. by Y Lu (2014) -
Ding, F. et al. Dendrite-free lithium deposition via self-healing electrostatic shield mechanism. J. Am. Chem. Soc. 135, 4450–4456 (2013).
(
10.1021/ja312241y
) / J. Am. Chem. Soc. by F Ding (2013) -
Park, M. S. et al. A highly reversible lithium metal anode. Sci. Rep. 4, 3815 (2014).
(
10.1038/srep03815
) / Sci. Rep. by MS Park (2014) -
Aurbach, D. et al. On the surface chemical aspects of very high energy density, rechargeable Li–sulfur batteries. J. Electrochem. Soc. 156, A694 (2009).
(
10.1149/1.3148721
) / J. Electrochem. Soc. by D Aurbach (2009) -
Zheng, G. et al. Interconnected hollow carbon nanospheres for stable lithium metal anodes. Nat. Nanotech. 9, 618–623 (2014).
(
10.1038/nnano.2014.152
) / Nat. Nanotech. by G Zheng (2014) -
Kai, Y. et al. Ultrathin two-dimensional atomic crystals as stable interfacial layer for improvement of lithium metal anode. Nano Lett. 14, 6016–6022 (2014).
(
10.1021/nl503125u
) / Nano Lett. by Y Kai (2014) -
Yang, Y., Zheng, G. & Cui, Y. Nanostructured sulfur cathodes. Chem. Soc. Rev. 42, 3018 (2013).
(
10.1039/c2cs35256g
) / Chem. Soc. Rev. by Y Yang (2013) -
Manthiram, A., Fu, Y. -Z. & Su, Y. -S. Challenges and prospects of lithium-sulfur batteries. Acc. Chem. Res. 46, 1125–1134 (2013).
(
10.1021/ar300179v
) / Acc. Chem. Res. by A Manthiram (2013) -
Evers, S. & Nazar, L. F. New approaches for high energy density lithium–sulfur battery cathodes. Acc. Chem. Res. 46, 1135–1143 (2013).
(
10.1021/ar3001348
) / Acc. Chem. Res. by S Evers (2013) -
Tanga, M., Albertusa, P. & Newmana, J. Two-dimensional modeling of lithium deposition during cell charging. J. Electrochem. Soc. 156, A390–A399 (2009).
(
10.1149/1.3095513
) / J. Electrochem. Soc. by M Tanga (2009) -
Barchasz, C., Lepretre, J. C., Alloin, F. & Patoux, S. New insights into the limiting parameters of the Li/S rechargeable cell. J. Power Sources 199, 322–330 (2012).
(
10.1016/j.jpowsour.2011.07.021
) / J. Power Sources by C Barchasz (2012) -
Ryou, M. -H. et al. Excellent cycle life of lithium-metal anodes in lithium-ion batteries with mussel-inspired polydopamine-coated separators. Adv. Energy Mater. 2, 645–650 (2012).
(
10.1002/aenm.201100687
) / Adv. Energy Mater. by M-H Ryou (2012) - Moulder, J. F. & Chastain, J. Handbook of X-ray Photoelectron Spectroscopy: a Reference Book of Standard Spectra for Identification and Interpretation of XPS Data, Physical Electronics Division Perkin-Elmer Corp (1995).
-
Zu, C. & Manthiram, A. Stabilized lithium−metal surface in a polysulfide-rich environment of lithium−sulfur batteries. J. Phys. Chem. Lett. 5, 2522–2527 (2014).
(
10.1021/jz501352e
) / J. Phys. Chem. Lett. by C Zu (2014) -
Yang, Y., Zheng, G. & Cui, Y. A membrane-free lithium/polysulfide semi-liquid battery for large-scale energy storage. Energy Environ. Sci. 6, 1552–1558 (2013).
(
10.1039/c3ee00072a
) / Energy Environ. Sci. by Y Yang (2013)
Dates
Type | When |
---|---|
Created | 10 years, 2 months ago (June 17, 2015, 6:37 a.m.) |
Deposited | 2 years, 7 months ago (Jan. 5, 2023, 6:30 a.m.) |
Indexed | 1 week, 5 days ago (Aug. 12, 2025, 5:35 p.m.) |
Issued | 10 years, 2 months ago (June 17, 2015) |
Published | 10 years, 2 months ago (June 17, 2015) |
Published Online | 10 years, 2 months ago (June 17, 2015) |
@article{Li_2015, title={The synergetic effect of lithium polysulfide and lithium nitrate to prevent lithium dendrite growth}, volume={6}, ISSN={2041-1723}, url={http://dx.doi.org/10.1038/ncomms8436}, DOI={10.1038/ncomms8436}, number={1}, journal={Nature Communications}, publisher={Springer Science and Business Media LLC}, author={Li, Weiyang and Yao, Hongbin and Yan, Kai and Zheng, Guangyuan and Liang, Zheng and Chiang, Yet-Ming and Cui, Yi}, year={2015}, month=jun }