[1] XU W, WANG J L, DING F, et al. Lithium metal anodes for rechargeable batteries[J]. Energy & Environmental Science, 2014, 7(2):513-537.
[2] WHITTINGHAM M S. History, evolution, and future status of energy storage[J]. Proceedings of the IEEE, 2012, 100(3):1518-1534.
[3] SCROSATI B. History of lithium batteries[J]. Journal of Solid State Electrochemistry, 2011, 15(7):1623-1630.
[4] TARASCON J, ARMAND M. Issues and challenges facing rechargeable lithium batteries[J]. Nature, 2001, 414(6861):359-367.
[5] CHENG X B, ZHANG R, ZHAO C Z, et al. Toward safe lithium metal anode in rechargeable batteries:A review[J]. Chemical Reviews, 2017, 117(15):10403-10473.
[6] LIN D, LIU Y, CUI Y. Reviving the lithium metal anode for high-energy batteries[J]. Nature Nanotechnology, 2017, 12(3):194-206.
[7] AKOLKAR R. Modeling dendrite growth during lithium electrodeposition at sub-ambient temperature[J]. Journal of Power Sources, 2014, 246:84-89.
[8] CHANDRASHEKAR S, TREASE N M, CHANG H J, et al. 7Li MRI of Li batteries reveals location of microstructural lithium[J]. Nature Materials, 2012, 11(4):311-315.
[9] GIREAUD L, GRUGEON S, LARUELLE S, et al. Lithium metal stripping/plating mechanisms studies:A metallurgical approach[J]. Electrochemistry Communications, 2006, 8(10):1639-1649.
[10] MONROE C, NEWMAN J. Dendrite growth in lithium/polymer systems a propagation model for liquid electrolytes under galvanostatic conditions[J]. Journal of the Electrochemical Society, 2003, 150(10):A1377-A1384.
[11] SUO L, HU Y S, LI H, et al. A new class of solvent-in-salt electrolyte for high-energy rechargeable metallic lithium batteries[J]. Nature Communications, 2013, 4:1481.
[12] SANO H, SAKAEBE H, MATSUMOTO H. Effect of organic additives on electrochemical properties of Li anode in room temperature ionic liquid[J]. Journal of the Electrochemical Society, 2011, 158(3):A316-A321.
[13] STARK J K, DING Y, KOHL P A. Dendrite-free electrodeposition and reoxidation of lithium-sodium alloy for metal-anode battery[J]. Journal of the Electrochemical Society, 2011, 158(10):A1100-A1105.
[14] SHI P, FANG S, HUANG J, et al. A novel mixture of lithium bis(oxalato)borate, gamma-butyrolactone and non-flammable hydrofluoroether as a safe electrolyte for advanced lithium ion batteries[J]. Journal of Materials Chemistry A, 2017, 5(37):19982-19990.
[15] UMEDA G A, MENKE E, RICHARD M, et al. Protection of lithium metal surfaces using tetraethoxysilane[J]. Journal of Materials Chemistry, 2011, 21(5):1593-1599.
[16] WU M, WEN Z, LIU Y, et al. Electrochemical behaviors of a Li3N modified Li metal electrode in secondary lithium batteries[J]. Journal of Power Sources, 2011, 196(19):8091-8097.
[17] ZHENG G, WANG C, PEI A, et al. High performance lithium metal negative electrode with a soft and flowable polymer coating[J]. ACS Energy Letters, 2016, 1(6):1247-1255.
[18] LIU C, MA X, XU F, et al. Ionic liquid electrolyte of lithium bis (fluorosulfonyl) imide/N-methyl-N-propylpiperidinium bis (fluorosulfonyl) imide for Li/natural graphite cells:Effect of concentration of lithium salt on the physicochemical and electrochemical properties[J]. Electrochimica Acta, 2014, 149:370-385.
[19] LIU S, IMANISHI N, ZHANG T, et al. Lithium dendrite formation in Li/poly (ethylene oxide)-lithium bis (trifluoromethanesulfonyl) imide and N-methyl-N-propylpiperidinium bis (trifluoromethanesulfonyl) imide/Li cells[J]. Journal of the Electrochemical Society, 2010, 157(10):A1092-A1098.
[20] FU K K, GONG Y, XU S, et al. Stabilizing the garnet solid-electrolyte/polysulfide interface in Li-S batteries[J]. Chemistry of Materials, 2017, 29(19):8037-8041.
[21] JIANG K, WANG J, LI Q, et al. Superaligned carbon nanotube arrays, films, and yarns:A road to applications[J]. Advanced Materials, 2011, 23(9):1154-1161.
[22] WANG D, SONG P, LIU C, et al. Highly oriented carbon nanotube papers made of aligned carbon nanotubes[J]. Nanotechnology, 2008, 19(7):75609.
[23] MENG C Z, LIU C H, FAN S S. Flexible carbon nanotube/polyaniline paper-like films and their enhanced electrochemical properties[J]. Electrochemistry Communications, 2009, 11(1):186-189.
[24] LUO S, WANG K, WANG J P, et al. Binder-free LiCoO2/carbon nanotube cathodes for high-performance lithium ion batteries[J]. Advanced Materials, 2012, 24(17):2294-2298. |