Electrochemically induced highly ion conductive porous scaffolds to stabilize lithium deposition for lithium metal anodes
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Qingshui Xie | Laisen Wang | D. Peng | Yating Ma | Hongfei Zheng | Xiaolin Yan | Qiulin Chen | Yifang Yang
[1] D. Billaud,et al. Electrochemical Insertion of Lithium into Graphite–Zinc Composites , 2004 .
[2] Zhan Lin,et al. Recent developments in nanostructured anode materials for rechargeable lithium-ion batteries , 2011 .
[3] G. Stucky,et al. Spatially heterogeneous carbon-fiber papers as surface dendrite-free current collectors for lithium deposition , 2012 .
[4] Cheol‐Min Park,et al. Nanostructured Zn-based composite anodes for rechargeable Li-ion batteries , 2012 .
[5] Jun Liu,et al. Dendrite-free lithium deposition via self-healing electrostatic shield mechanism. , 2013, Journal of the American Chemical Society.
[6] Li-Jun Wan,et al. Lithium-sulfur batteries: electrochemistry, materials, and prospects. , 2013, Angewandte Chemie.
[7] Nancy J. Dudney,et al. Phosphorous Pentasulfide as a Novel Additive for High‐Performance Lithium‐Sulfur Batteries , 2013 .
[8] Lynden A Archer,et al. Stable lithium electrodeposition in liquid and nanoporous solid electrolytes. , 2014, Nature materials.
[9] Terence J. Lozano,et al. Failure Mechanism for Fast‐Charged Lithium Metal Batteries with Liquid Electrolytes , 2015 .
[10] Guangyuan Zheng,et al. The synergetic effect of lithium polysulfide and lithium nitrate to prevent lithium dendrite growth , 2015, Nature Communications.
[11] N. Kotov,et al. A dendrite-suppressing composite ion conductor from aramid nanofibres , 2015, Nature Communications.
[12] Jianming Zheng,et al. High Energy Density Lithium–Sulfur Batteries: Challenges of Thick Sulfur Cathodes , 2015 .
[13] Ya‐Xia Yin,et al. Accommodating lithium into 3D current collectors with a submicron skeleton towards long-life lithium metal anodes , 2015, Nature Communications.
[14] Yayuan Liu,et al. Lithium-coated polymeric matrix as a minimum volume-change and dendrite-free lithium metal anode , 2016, Nature Communications.
[15] P. Pedrosa,et al. Temperature dependence of electrical resistivity in oxidized vanadium films grown by the GLAD technique , 2016 .
[16] Mihui Park,et al. Recent Developments of the Lithium Metal Anode for Rechargeable Non‐Aqueous Batteries , 2016 .
[17] Lynden A. Archer,et al. Design principles for electrolytes and interfaces for stable lithium-metal batteries , 2016, Nature Energy.
[18] Yayuan Liu,et al. Layered reduced graphene oxide with nanoscale interlayer gaps as a stable host for lithium metal anodes. , 2016, Nature nanotechnology.
[19] Xin-Bing Cheng,et al. Conductive Nanostructured Scaffolds Render Low Local Current Density to Inhibit Lithium Dendrite Growth , 2016, Advanced materials.
[20] Dingchang Lin,et al. Stabilizing Lithium Metal Anodes by Uniform Li-Ion Flux Distribution in Nanochannel Confinement. , 2016, Journal of the American Chemical Society.
[21] Yan‐Bing He,et al. Chemical Dealloying Derived 3D Porous Current Collector for Li Metal Anodes , 2016, Advanced materials.
[22] Doron Aurbach,et al. Promise and reality of post-lithium-ion batteries with high energy densities , 2016 .
[23] Hyun-Wook Lee,et al. Selective deposition and stable encapsulation of lithium through heterogeneous seeded growth , 2016, Nature Energy.
[24] Allen Pei,et al. Stitching h-BN by atomic layer deposition of LiF as a stable interface for lithium metal anode , 2017, Science Advances.
[25] Qiang Zhang,et al. Prestoring Lithium into Stable 3D Nickel Foam Host as Dendrite‐Free Lithium Metal Anode , 2017 .
[26] Jianming Zheng,et al. Electrolyte additive enabled fast charging and stable cycling lithium metal batteries , 2017, Nature Energy.
[27] Yayuan Liu,et al. An Artificial Solid Electrolyte Interphase with High Li‐Ion Conductivity, Mechanical Strength, and Flexibility for Stable Lithium Metal Anodes , 2017, Advanced materials.
[28] Xin-Bing Cheng,et al. Advanced Micro/Nanostructures for Lithium Metal Anodes , 2017, Advanced science.
[29] X. Tao,et al. 3D lithium metal embedded within lithiophilic porous matrix for stable lithium metal batteries , 2017 .
[30] T. Rojo,et al. Towards High‐Safe Lithium Metal Anodes: Suppressing Lithium Dendrites via Tuning Surface Energy , 2016, Advanced science.
[31] Shaomao Xu,et al. High-capacity, low-tortuosity, and channel-guided lithium metal anode , 2017, Proceedings of the National Academy of Sciences.
[32] Qi Li,et al. 3D Porous Cu Current Collector/Li‐Metal Composite Anode for Stable Lithium‐Metal Batteries , 2017 .
[33] Ya‐Xia Yin,et al. Stable Li Plating/Stripping Electrochemistry Realized by a Hybrid Li Reservoir in Spherical Carbon Granules with 3D Conducting Skeletons. , 2017, Journal of the American Chemical Society.
[34] P. Pedrosa,et al. Correlation between structure and electrical resistivity of W-Cu thin films prepared by GLAD co-sputtering , 2017 .
[35] Zhenan Bao,et al. Lithium Metal Anodes with an Adaptive "Solid-Liquid" Interfacial Protective Layer. , 2017, Journal of the American Chemical Society.
[36] Yi Cui,et al. Reviving the lithium metal anode for high-energy batteries. , 2017, Nature nanotechnology.
[37] Jun Lu,et al. Fundamental Understanding and Material Challenges in Rechargeable Nonaqueous Li–O2 Batteries: Recent Progress and Perspective , 2018, Advanced Energy Materials.
[38] Jun Lu,et al. High-Performance Anode Materials for Rechargeable Lithium-Ion Batteries , 2018, Electrochemical Energy Reviews.
[39] Weiyuan Deng,et al. Microscale Lithium Metal Stored inside Cellular Graphene Scaffold toward Advanced Metallic Lithium Anodes , 2018 .
[40] Xiaogang Han,et al. Direct growth of 3D host on Cu foil for stable lithium metal anode , 2018, Energy Storage Materials.
[41] Jun Lu,et al. Compact 3D Copper with Uniform Porous Structure Derived by Electrochemical Dealloying as Dendrite‐Free Lithium Metal Anode Current Collector , 2018 .
[42] Guangmin Zhou,et al. Vertically Aligned Lithiophilic CuO Nanosheets on a Cu Collector to Stabilize Lithium Deposition for Lithium Metal Batteries , 2018 .
[43] Bing Sun,et al. Three-dimensional pie-like current collectors for dendrite-free lithium metal anodes , 2018 .
[44] Yitai Qian,et al. Vacuum distillation derived 3D porous current collector for stable lithium–metal batteries , 2018 .
[45] K. Yuan,et al. A Scalable Approach to Dendrite‐Free Lithium Anodes via Spontaneous Reduction of Spray‐Coated Graphene Oxide Layers , 2018, Advanced materials.
[46] K. Yuan,et al. Suppressing Dendritic Lithium Formation Using Porous Media in Lithium Metal-Based Batteries. , 2018, Nano letters.
[47] X. Tao,et al. Metal oxide nanoparticles induced step-edge nucleation of stable Li metal anode working under an ultrahigh current density of 15 mA cm−2 , 2018 .
[48] Jiaqi Huang,et al. Dual‐Layered Film Protected Lithium Metal Anode to Enable Dendrite‐Free Lithium Deposition , 2018, Advanced materials.
[49] Allen Pei,et al. Engineering stable interfaces for three-dimensional lithium metal anodes , 2018, Science Advances.
[50] A. Gonzalez-Elipe,et al. Growth of nanocolumnar porous TiO 2 thin films by magnetron sputtering using particle collimators , 2017, Surface and Coatings Technology.