In Situ Conversion of Cu3P Nanowires to Mixed Ion/Electron‐Conducting Skeleton for Homogeneous Lithium Deposition
暂无分享,去创建一个
Jun Jin | Z. Wen | Jun Jin | Changzhi Sun | Jianhua Yang | Zhaoyin Wen | Jianhua Yang | Changzhi Sun | Aming Lin | Wenwen Li | Yiyang Sun | Yiyang Sun | Aming Lin | Wenwen Li | Changzhi Sun
[1] Xiqian Yu,et al. Electro-plating and stripping behavior on lithium metal electrode with ordered three-dimensional structure , 2018 .
[2] Sung-Jin Cho,et al. In Situ Dendrite Suppression Study of Nanolayer Encapsulated Li Metal Enabled by Zirconia Atomic Layer Deposition. , 2018, ACS applied materials & interfaces.
[3] Xiao‐Qing Yang,et al. Wettable carbon felt framework for high loading Li-metal composite anode , 2019, Nano Energy.
[4] Xiaoting Lin,et al. A Novel Organic “Polyurea” Thin Film for Ultralong‐Life Lithium‐Metal Anodes via Molecular‐Layer Deposition , 2018, Advanced materials.
[5] Guangyuan Zheng,et al. Nanoscale Nucleation and Growth of Electrodeposited Lithium Metal. , 2017, Nano letters.
[6] Qi Li,et al. Understanding the molecular mechanism of pulse current charging for stable lithium-metal batteries , 2017, Science Advances.
[7] Rui Zhang,et al. Lithiophilic Sites in Doped Graphene Guide Uniform Lithium Nucleation for Dendrite-Free Lithium Metal Anodes. , 2017, Angewandte Chemie.
[8] K. Zaghib,et al. A platinum nanolayer on lithium metal as an interfacial barrier to shuttle effect in Li-S batteries , 2019, Journal of Power Sources.
[9] Hyun-Wook Lee,et al. Lithium Silicide Surface Enrichment: A Solution to Lithium Metal Battery , 2018, Advanced materials.
[10] Guoqiang Ma,et al. A lithium anode protection guided highly-stable lithium-sulfur battery. , 2014, Chemical communications.
[11] Yuan Yang,et al. Operando and three-dimensional visualization of anion depletion and lithium growth by stimulated Raman scattering microscopy , 2018, Nature Communications.
[12] Jiayan Luo,et al. Mixed Ion and Electron‐Conducting Scaffolds for High‐Rate Lithium Metal Anodes , 2019, Advanced Energy Materials.
[13] Z. Wen,et al. Vinylene carbonate–LiNO3: A hybrid additive in carbonic ester electrolytes for SEI modification on Li metal anode , 2015 .
[14] J. Chazalviel,et al. Electrochemical aspects of the generation of ramified metallic electrodeposits. , 1990, Physical review. A, Atomic, molecular, and optical physics.
[15] Wen Liu,et al. Surface Restraint Synthesis of an Organic-Inorganic Hybrid Layer for Dendrite-Free Lithium Metal Anode. , 2019, ACS applied materials & interfaces.
[16] Kai Xie,et al. Characterization of the solid electrolyte interphase on lithium anode for preventing the shuttle mechanism in lithium–sulfur batteries , 2014 .
[17] Lei Fan,et al. Hierarchical Co3O4 Nanofiber–Carbon Sheet Skeleton with Superior Na/Li‐Philic Property Enabling Highly Stable Alkali Metal Batteries , 2019, Advanced Functional Materials.
[18] Na Xu,et al. Half‐Cell and Full‐Cell Applications of Highly Stable and Binder‐Free Sodium Ion Batteries Based on Cu3P Nanowire Anodes , 2016 .
[19] Rui Zhang,et al. An Armored Mixed Conductor Interphase on a Dendrite‐Free Lithium‐Metal Anode , 2018, Advanced materials.
[20] B. Ding,et al. Mixed Ionic and Electronic Conductor for Li‐Metal Anode Protection , 2018, Advanced materials.
[21] Z. Wen,et al. Favorable lithium deposition behaviors on flexible carbon microtube skeleton enable a high-performance lithium metal anode , 2018 .
[22] Yi Cui,et al. Reviving the lithium metal anode for high-energy batteries. , 2017, Nature nanotechnology.
[23] Jun Lu,et al. Automotive Li-Ion Batteries: Current Status and Future Perspectives , 2019, Electrochemical Energy Reviews.
[24] Hailong Chen,et al. In situ NMR observation of the formation of metallic lithium microstructures in lithium batteries. , 2010, Nature materials.
[25] Z. Wen,et al. ZnO nanoarray-modified nickel foam as a lithiophilic skeleton to regulate lithium deposition for lithium-metal batteries , 2019, Journal of Materials Chemistry A.
[26] Z. Wen,et al. An ion-conductive Li 1.5 Al 0.5 Ge 1.5 (PO 4 ) 3 -based composite protective layer for lithium metal anode in lithium-sulfur batteries , 2018 .
[27] Xuanxuan Bi,et al. Magnetic Field–Suppressed Lithium Dendrite Growth for Stable Lithium‐Metal Batteries , 2019, Advanced Energy Materials.
[28] Andreas Jossen,et al. Modeling of lithium plating and lithium stripping in lithium-ion batteries , 2019, Journal of Power Sources.
[29] Kyeongjae Cho,et al. 2D MoS2 as an efficient protective layer for lithium metal anodes in high-performance Li–S batteries , 2018, Nature Nanotechnology.
[30] Jinbao Zhao,et al. Self-adaptive electrochemical reconstruction boosted exceptional Li+ ion storage in a Cu3P@C anode , 2018 .
[31] Liping Wang,et al. Interlayered Dendrite‐Free Lithium Plating for High‐Performance Lithium‐Metal Batteries , 2019, Advanced materials.
[32] Ji‐Guang Zhang,et al. Lithium metal anodes for rechargeable batteries , 2014 .
[33] Yang‐Kook Sun,et al. Cycling characteristics of lithium metal batteries assembled with a surface modified lithium electrode , 2013 .
[34] Hailong Chen,et al. Facile and scalable electrodeposition of copper current collectors for high-performance Li-metal batteries , 2019, Nano Energy.
[35] Ji‐Guang Zhang,et al. Dendrite-Free Li Deposition Using Trace-Amounts of Water as an Electrolyte Additive , 2015 .
[36] P. Mukherjee,et al. Mechanistic insight into dendrite–SEI interactions for lithium metal electrodes , 2018 .
[37] Ya‐Xia Yin,et al. Graphitized Carbon Fibers as Multifunctional 3D Current Collectors for High Areal Capacity Li Anodes , 2017, Advanced materials.
[38] G. Nazri. Preparation, structure and ionic conductivity of lithium phosphide , 1989 .
[39] C. H. Wörner,et al. An electrodeposition method to obtain Cu-Li alloys , 1995 .
[40] Doron Aurbach,et al. Very Stable Lithium Metal Stripping–Plating at a High Rate and High Areal Capacity in Fluoroethylene Carbonate-Based Organic Electrolyte Solution , 2017 .
[41] Yunhui Gong,et al. Three-Dimensional, Solid-State Mixed Electron-Ion Conductive Framework for Lithium Metal Anode. , 2018, Nano letters.
[42] Kevin N. Wood,et al. Dead lithium: Mass transport effects on voltage, capacity, and failure of lithium metal anodes , 2017 .
[43] Xianmao Lu,et al. Suppressing Lithium Dendrite Growth via Sinusoidal Ripple Current Produced by Triboelectric Nanogenerators , 2019, Advanced Energy Materials.
[44] Andrew L. Davis,et al. Synergistic Effect of 3D Current Collectors and ALD Surface Modification for High Coulombic Efficiency Lithium Metal Anodes , 2018, ECS Meeting Abstracts.
[45] A. Manthiram,et al. Designing a high-loading sulfur cathode with a mixed ionic-electronic conducting polymer for electrochemically stable lithium-sulfur batteries , 2019, Energy Storage Materials.
[46] Qian Sun,et al. Robust Metallic Lithium Anode Protection by the Molecular‐Layer‐Deposition Technique , 2018 .
[47] B. Dunn,et al. Electrical Energy Storage for the Grid: A Battery of Choices , 2011, Science.
[48] Yang Zhao,et al. Towards high performance Li metal batteries: Nanoscale surface modification of 3D metal hosts for pre-stored Li metal anodes , 2018, Nano Energy.
[49] Chunsheng Wang,et al. Kinetic characteristics of mixed conductive electrodes for lithium ion batteries , 2007 .
[50] Xiulin Fan,et al. High-Performance All-Solid-State Lithium-Sulfur Battery Enabled by a Mixed-Conductive Li2S Nanocomposite. , 2016, Nano letters.
[51] Jun Liu,et al. Dendrite-free lithium deposition via self-healing electrostatic shield mechanism. , 2013, Journal of the American Chemical Society.
[52] T. Kanade,et al. Patents pending. , 2011, Nature materials.
[53] C. H. Wörner,et al. Obtaining of single phase Cu-Li alloy through an electrodeposition process , 2005 .
[54] Z. Wen,et al. Pre-modified Li 3 PS 4 based interphase for lithium anode towards high-performance Li-S battery , 2018 .
[55] Dingchang Lin,et al. Uniform High Ionic Conducting Lithium Sulfide Protection Layer for Stable Lithium Metal Anode , 2019, Advanced Energy Materials.
[56] Liquan Chen,et al. In-situ visualization of lithium plating in all-solid-state lithium-metal battery , 2019, Nano Energy.
[57] Weishan Li,et al. Facile and scalable engineering of a heterogeneous microstructure for uniform, stable and fast lithium plating/stripping , 2019, Journal of Materials Chemistry A.
[58] Boyang Liu,et al. 3D Wettable Framework for Dendrite‐Free Alkali Metal Anodes , 2018 .