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Topological polymer electrolyte containing poly(pinacol vinylboronate) segments composited with ceramic nanowires towards ambient-temperature superior performance all-solid-state lithium batteries Wang S, Li JY, Li QY, Chen J, Liu X, Wang ZN, Zeng QH, Zhao T, Liu XF, Zhang LY Journal of Power Sources, 413, 318, 2019 |
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NASICON-type La3+ substituted LiZr2(PO4)(3) with improved ionic conductivity as solid electrolyte Ramar V, Kumar S, Sivakkumar SR, Balaya P Electrochimica Acta, 271, 120, 2018 |
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A superior composite gel polymer electrolyte of Li7La3Zr2O12- poly (vinylidene fluoride-hexafluoropropylene) (PVDF-HFP) for rechargeable solid-state lithium ion batteries Liang YF, Deng SJ, Xia Y, Wang XL, Xia XH, Wu JB, Gu CD, Tu JP Materials Research Bulletin, 102, 412, 2018 |
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Electrochemical performance of a solvent-free hybrid ceramic-polymer electrolyte based on Li7La3Zr2O12 in P(EO)(15)LiTFSI Keller M, Appetecchi GB, Kim GT, Sharova V, Schneider M, Schuhmacher J, Roters A, Passerini S Journal of Power Sources, 353, 287, 2017 |
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Li6Zr2O7 interstitial lithium-ion solid electrolyte Liao YH, Singh P, Park KS, Li WS, Goodenough JB Electrochimica Acta, 102, 446, 2013 |
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Low temperature synthesis of Yb doped SrCeO3 powders by gel combustion process Zhang C, Li S, Liu XP, Zhao XS, He D, Qiu HC, Yu QH, Wang SM, Jiang LJ International Journal of Hydrogen Energy, 38(29), 12921, 2013 |
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Fabrication of all solid-state rechargeable lithium battery and its electrochemical properties Rho YH, Kanamura K Journal of Power Sources, 158(2), 1436, 2006 |
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Advanced, high-performance composite polymer electrolytes for lithium batteries Croce F, Sacchetti S, Scrosati B Journal of Power Sources, 161(1), 560, 2006 |
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Advanced, lithium batteries based on high-performance composite polymer electrolytes Croce F, Sacchetti S, Scrosati B Journal of Power Sources, 162(1), 685, 2006 |
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Visualization of particle distribution in composite polymer electrolyte systems Zhang S, Lee JY, Hong L Journal of Power Sources, 126(1-2), 125, 2004 |