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Makiura, R., Yonemura, T., Yamada, T., Yamauchi, M., Ikeda, R., Kitagawa, H., Kato, K., & Takata, M. (2009). Size-controlled stabilization of the superionic phase to room temperature in polymer-coated AgI nanoparticles. Nature Materials, 8(6), 476–480.

Authors 8
  1. Rie Makiura (first)
  2. Takayuki Yonemura (additional)
  3. Teppei Yamada (additional)
  4. Miho Yamauchi (additional)
  5. Ryuichi Ikeda (additional)
  6. Hiroshi Kitagawa (additional)
  7. Kenichi Kato (additional)
  8. Masaki Takata (additional)
References 30 Referenced 162
  1. Owens, B. B. Solid state electrolytes: Overview of materials and applications during the last third of the twentieth century. J. Power Sources 90, 2–8 (2000). (10.1016/S0378-7753(00)00436-5) / J. Power Sources by BB Owens (2000)
  2. Arico, A. S., Bruce, P., Scrosati, B., Tarascon, J. M. & Schalkwijk, W. V. Nanostructured materials for advanced energy conversion and storage devices. Nature Mater. 4, 366–377 (2005). (10.1038/nmat1368) / Nature Mater. by AS Arico (2005)
  3. Waser, R. & Aono, M. Nanoionics-based resistive switching memories. Nature Mater. 6, 833–840 (2007). (10.1038/nmat2023) / Nature Mater. by R Waser (2007)
  4. Guo, Y. G., Hu, J. S. & Wan, L. J. Nanostructured materials for electrochemical energy conversion and storage devices. Adv. Mater. 20, 2878–2887 (2008). (10.1002/adma.200800627) / Adv. Mater. by YG Guo (2008)
  5. Rolison, D. R. et al. Multifunctional 3D nanoarchitectures for energy storage and conversion. Chem. Soc. Rev. 38, 226–252 (2009). (10.1039/B801151F) / Chem. Soc. Rev. by DR Rolison (2009)
  6. Hull, S. Superionics: Crystal structures and conduction processes. Rep. Prog. Phys. 67, 1233–1314 (2004). (10.1088/0034-4885/67/7/R05) / Rep. Prog. Phys. by S Hull (2004)
  7. Bradley, J. N. & Greene, P. D. Solids with high ionic conductivity in Group 1 halide systems. Trans. Faraday Soc. 63, 424–430 (1967). (10.1039/tf9676300424) / Trans. Faraday Soc. by JN Bradley (1967)
  8. Shahi, K. & Wagner, J. B. Jr. Fast ion transport in silver halide solid solutions and multiphase systems. Appl. Phys. Lett. 37, 757–759 (1980). (10.1063/1.92023) / Appl. Phys. Lett. by K Shahi (1980)
  9. Noelting, J. & Bunsenges, B. Thermodynamic investigation of the silver and copper(I) halide systems. I. The AgI–CuI system. J. Phys. Chem. 68, 932–939 (1964). / J. Phys. Chem. by J Noelting (1964)
  10. Shahi, K. & Wagner, J. B. Jr. Ionic conductivity and thermoelectric power of pure and Al2O3-dispersed AgI. J. Electrochem. Soc. 128, 6–13 (1981). (10.1149/1.2127390) / J. Electrochem. Soc. by K Shahi (1981)
  11. Lee, J. S., Adams, S. & Maier, J. Transport and phase transition characteristics in AgI:Al2O3 composite electrolytes. J. Electrochem. Soc. 147, 2407–2418 (2000). (10.1149/1.1393545) / J. Electrochem. Soc. by JS Lee (2000)
  12. Tatsumisago, M., Shinkuma, Y. & Minami, T. Stabilization of superionic α-AgI at room temperature in a glass matrix. Nature 354, 217–218 (1991). (10.1038/354217a0) / Nature by M Tatsumisago (1991)
  13. Saito, T., Tatsumisago, M., Torata, N. & Minami, T. Stabilization process of α-AgI particles dispersed in glass matrices at room temperature. Solid State Ion. 19, 279–283 (1995). (10.1016/0167-2738(95)00074-G) / Solid State Ion. by T Saito (1995)
  14. Takagi, M. Electron-diffraction study of liquid-solid transition of thin metal films. J. Phys. Soc. Jpn 9, 359–363 (1954). (10.1143/JPSJ.9.359) / J. Phys. Soc. Jpn by M Takagi (1954)
  15. Blackman, M. & Sambles, J. R. Melting of very small particles during evaporation at constant temperature. Nature 226, 938–938 (1970). (10.1038/226938a0) / Nature by M Blackman (1970)
  16. Couchman, P. R. & Jesser, W. A. Thermodynamic theory of size dependence of melting temperature in metals. Nature 269, 481–483 (1977). (10.1038/269481a0) / Nature by PR Couchman (1977)
  17. Singh, V. N. & Mehta, B. R. Nanoparticle size-dependent lowering of temperature for phase transition from In(OH)3 to In2O3 . J. Nanosci. Nanotechnol. 5, 431–435 (2005). (10.1166/jnn.2005.056) / J. Nanosci. Nanotechnol. by VN Singh (2005)
  18. Hoshina, T., Kakemoto, H., Tsurumi, T., Wada, S. & Yashima, M. Size and temperature induced phase transition behaviors of barium titanate nanoparticles. Appl. Phys. Lett. 99, 054311 (2006). / Appl. Phys. Lett. by T Hoshina (2006)
  19. Chernyshova, I. V., Hochella, M. F. Jr & Madden, A. S. Size-dependent structural transformations of hematite nanoparticles. 1. Phase transition. Phys. Chem. Chem. Phys. 9, 1736–1750 (2007). (10.1039/b618790k) / Phys. Chem. Chem. Phys. by IV Chernyshova (2007)
  20. Bandaranayake, R. J., Wen, G. W., Lin, J. Y., Jiang, H. X. & Sorensen, C. M. Structural phase behavior in II–VI semiconductor nanoparticles. Appl. Phys. Lett. 67, 831–833 (1995). (10.1063/1.115458) / Appl. Phys. Lett. by RJ Bandaranayake (1995)
  21. Guo, Y. G., Lee, J. S. & Maier, J. AgI nanoplates with mesoscopic superionic conductivity at room temperature. Adv. Mater. 17, 2815–2819 (2005). (10.1002/adma.200501215) / Adv. Mater. by YG Guo (2005)
  22. Guo, Y. G., Lee, J. S., Hu, Y. S. & Maier, J. AgI nanoplates in unusual 7H/9R structures. Highly ionically conducting polytype heterostructures. J. Electrochem. Soc. 154, K51–K60 (2007). (10.1149/1.2750514) / J. Electrochem. Soc. by YG Guo (2007)
  23. Liang, C., Terabe, K., Hasegawa, T. & Aono, M. Anomalous phase transition and ionic conductivity of AgI nanowire grown using porous alumina template. J. Appl. Phys. 102, 124308 (2007). (10.1063/1.2828141) / J. Appl. Phys. by C Liang (2007)
  24. Hanaya, M., Osawa, I. & Watanabe, K. XRD and thermal studies of AgI confined in nm-size pores by forming porous silica-AgI composites. J. Therm. Anal. Cal. 76, 529–536 (2004). (10.1023/B:JTAN.0000028031.50047.85) / J. Therm. Anal. Cal. by M Hanaya (2004)
  25. Baryshnikov, S. V. et al. Superionic phase transition in AgI embedded in molecular sieves. J. Phys. Condens. Matter 20, 025214 (2008). (10.1088/0953-8984/20/02/025214) / J. Phys. Condens. Matter by SV Baryshnikov (2008)
  26. Reddy, M. J., Rao, S. S., Laxminarsaiah, E. & Rao, U. V. S. Study of a thin film electrochemical cell based on (PVP+AgNO3) electrolyte. Solid State Ion. 80, 93–98 (1995). (10.1016/0167-2738(95)00128-S) / Solid State Ion. by MJ Reddy (1995)
  27. Maier, J. Ionic conduction in space charge regions. Prog. Solid State Chem. 23, 171–263 (1995). (10.1016/0079-6786(95)00004-E) / Prog. Solid State Chem. by J Maier (1995)
  28. Agrawal, R. C. & Gupta, R. K. Superionic solid: Composite electrolyte phase—an overview. J. Mater. Sci. 34, 1131–1162 (1999). (10.1023/A:1004598902146) / J. Mater. Sci. by RC Agrawal (1999)
  29. Kuwata, N., Saito, T., Tatsumisago, M., Minami, T. & Kawamura, J. Cation dynamics of stabilized α-AgI in AgI–Ag2O–MoO3 glasses, studied by Ag-109 NMR spectroscopy. J. Non-Cryst. Solids 324, 79–91 (2003). (10.1016/S0022-3093(03)00228-X) / J. Non-Cryst. Solids by N Kuwata (2003)
  30. Nishibori, E. et al. The large Debye–Scherrer camera installed at SPring-8 BL02B2 for charge density studies. Nucl. Instrum. Methods A 467-468, 1045–1048 (2001). (10.1016/S0168-9002(01)00639-8) / Nucl. Instrum. Methods A by E Nishibori (2001)
Dates
Type When
Created 16 years, 3 months ago (May 17, 2009, 1:13 p.m.)
Deposited 3 years, 1 month ago (July 6, 2022, 3:02 p.m.)
Indexed 1 day, 18 hours ago (Sept. 3, 2025, 7:12 a.m.)
Issued 16 years, 3 months ago (May 17, 2009)
Published 16 years, 3 months ago (May 17, 2009)
Published Online 16 years, 3 months ago (May 17, 2009)
Published Print 16 years, 3 months ago (June 1, 2009)
Funders 0

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@article{Makiura_2009, title={Size-controlled stabilization of the superionic phase to room temperature in polymer-coated AgI nanoparticles}, volume={8}, ISSN={1476-4660}, url={http://dx.doi.org/10.1038/nmat2449}, DOI={10.1038/nmat2449}, number={6}, journal={Nature Materials}, publisher={Springer Science and Business Media LLC}, author={Makiura, Rie and Yonemura, Takayuki and Yamada, Teppei and Yamauchi, Miho and Ikeda, Ryuichi and Kitagawa, Hiroshi and Kato, Kenichi and Takata, Masaki}, year={2009}, month=may, pages={476–480} }