﻿{"id":2625,"date":"2021-04-20T13:23:26","date_gmt":"2021-04-20T05:23:26","guid":{"rendered":"https:\/\/www.qianggroup.com\/wp\/?page_id=2625"},"modified":"2022-10-17T10:03:52","modified_gmt":"2022-10-17T02:03:52","slug":"paper-2021","status":"publish","type":"page","link":"https:\/\/www.qianggroup.com\/wp\/paper-2021\/","title":{"rendered":"\u8bba\u6587\uff082021\uff09"},"content":{"rendered":"\n<ol class=\"wp-block-list\"><li>Chen XR, Zhao BC, Yan C, Zhang Q. Review on Li Deposition in Working Batteries: From Nucleation to Early Growth. <strong><em>Advanced Materials<\/em><\/strong> 2021, 33, e2004128, doi: 10.1002\/adma.202004128. <a href=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-PDF\/AM-2021-Review%20on%20Li%20Deposition%20in%20Working%20Bat.pdf\">[PDF]<\/a><\/li><li>Ding JF, Xu R, Yao N, Chen X, Xiao Y, Yao YX, Yan C, Xie J, Huang JQ. Non-Solvating and Low-Dielectricity Cosolvent for Anion-Derived Solid Electrolyte Interphases in Lithium Metal Batteries. <strong><em>Angewandte Chemie International Edition<\/em><\/strong> 2021, doi: 10.1002\/anie.202101627. <a href=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-PDF\/Angew-2021-Non-Solvating%20and%20Low-Dielectricity.pdf\" title=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-PDF\/Angew-2021-Non-Solvating%20and%20Low-Dielectricity.pdf\">[PDF]<\/a><\/li><li>Fu ZH, Chen X, Zhao CZ, Yuan H, Zhang R, Shen X, Ma XX, Lu Y, Liu QB, Fan LZ, Zhang Q. Stress Regulation on Atomic Bonding and Ionic Diffusivity: Mechanochemical Effects in Sulfide Solid Electrolytes. <strong><em>Energy &amp; Fuels<\/em><\/strong> 2021, doi: 10.1021\/acs.energyfuels.1c00488. <a href=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-PDF\/ACSEF-2021-Stress%20Regulation%20on%20Atomic%20Bonding%20and%20Ionic%20Diffusivity.pdf\" title=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-PDF\/ACSEF-2021-Stress%20Regulation%20on%20Atomic%20Bonding%20and%20Ionic%20Diffusivity.pdf\">[PDF]<\/a><\/li><li>Jiang LL, Yan C, Yao YX, Cai W, Huang JQ, Zhang Q. Inhibiting Solvent Co-Intercalation in a Graphite Anode by a Localized High-Concentration Electrolyte in Fast-Charging Batteries. <strong><em>Angewandte Chemie International Edition<\/em><\/strong> 2021, 60, 3402, doi: 10.1002\/anie.202009738. <a href=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-PDF\/Jiang-2021-Inhibiting-solvent-cointercalation-.pdf\" title=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-PDF\/Jiang-2021-Inhibiting-solvent-cointercalation-.pdf\">[PDF]<\/a><\/li><li>Ma XX, Chen X, Bai YK, Shen X, Zhang R, Zhang Q. The Defect Chemistry of Carbon Frameworks for Regulating the Lithium Nucleation and Growth Behaviors in Lithium Metal Anodes. <strong><em>Small<\/em><\/strong> 2021, e2007142, doi: 10.1002\/smll.202007142. <a href=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-PDF\/Ma-2021-The-defect-chemistry-of-carbon-fram.pdf\" title=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-PDF\/Ma-2021-The-defect-chemistry-of-carbon-fram.pdf\">[PDF]<\/a><\/li><li>Shen X, Zhang R, Shi P, Chen X, Zhang Q. How Does External Pressure Shape Li Dendrites in Li Metal Batteries? <strong><em>Advanced Energy Materials<\/em><\/strong> 2021, 11, doi: 10.1002\/aenm.202003416. <a href=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-PDF\/Shen-2021-How-does-external-pressure-shape-li.pdf\" title=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-PDF\/Shen-2021-How-does-external-pressure-shape-li.pdf\">[PDF]<\/a><\/li><li>Shen X, Zhang XQ, Ding F, Huang JQ, Xu R, Chen X, Yan C, Su FY, Chen CM, Liu X, Zhang Q. Advanced Electrode Materials in Lithium Batteries: Retrospect and Prospect. <strong><em>Energy Material Advances<\/em><\/strong> 2021, 2021, 1, doi: 10.34133\/2021\/1205324. <a href=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-PDF\/EMA-2021-Advanced%20Electrode%20Materials%20in%20Lithium%20Batteries%20Retrospect.pdf\" title=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-PDF\/EMA-2021-Advanced%20Electrode%20Materials%20in%20Lithium%20Batteries%20Retrospect.pdf\">[PDF]<\/a><\/li><li>Song YW, Shi P, Li BQ, Chen X, Zhao CX, Chen WJ, Zhang XQ, Chen X, Zhang Q. Covalent Organic Frameworks Construct Precise Lithiophilic Sites for Uniform Lithium Deposition. <strong><em>Matter<\/em><\/strong> 2021, 4, 253, doi: 10.1016\/j.matt.2020.10.014. <a href=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-PDF\/Song-2021-Covalent-organic-frameworks-constru.pdf\" title=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-PDF\/Song-2021-Covalent-organic-frameworks-constru.pdf\">[PDF]<\/a><\/li><li>Yan C, Jiang LL, Yao YX, Lu Y, Huang JQ, Zhang Q. Nucleation and Growth Mechanism of Anion-Derived Solid Electrolyte Interphase in Rechargeable Batteries. <strong><em>Angewandte Chemie International Edition<\/em><\/strong> 2021, 60, 8521, doi: 10.1002\/anie.202100494. <a href=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-PDF\/Angew-2021-Nucleation%20and%20Growth%20M.pdf\" title=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-PDF\/Angew-2021-Nucleation%20and%20Growth%20M.pdf\">[PDF]<\/a><\/li><li>Yao YX, Chen X, Yan C, Zhang XQ, Cai W L, Huang J Q, Zhang Q. Regulating Interfacial Chemistry in Lithium-Ion Batteries by a Weakly Solvating Electrolyte. <strong><em>Angewandte Chemie International Edition<\/em><\/strong> 2021, 60, 4090, doi: 10.1002\/anie.202011482. <a href=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-PDF\/Yao-2021-Regulating-interfacial-chemistry-in.pdf\" title=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-PDF\/Yao-2021-Regulating-interfacial-chemistry-in.pdf\">[PDF]<\/a><\/li><li>Zhan YX, Shi P, Zhang X-Q, Ding F, Huang JQ, Jin Z, Xiang R, Liu X, Zhang Q. The Insights of Lithium Metal Plating\/Stripping in Porous Hosts: Progress and Perspectives. <strong><em>Energy Technology<\/em><\/strong> 2021, 9, doi: 10.1002\/ente.202000700. <a href=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-PDF\/Zhan-2021-The-insights-of-lithium-metal-plati.pdf\" title=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-PDF\/Zhan-2021-The-insights-of-lithium-metal-plati.pdf\">[PDF]<\/a><\/li><li>Zhao CX, Li B , Liu JN, Zhang Q. Intrinsic Electrocatalytic Activity Regulation of M-N-C Single-Atom Catalysts for the Oxygen Reduction Reaction. <strong><em>Angewandte Chemie International Edition<\/em><\/strong> 2021, 60, 4448, doi: 10.1002\/anie.202003917. <a href=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-PDF\/Zhao-2021-Intrinsic-electrocatalytic-activity.pdf\" title=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-PDF\/Zhao-2021-Intrinsic-electrocatalytic-activity.pdf\">[PDF]<\/a><\/li><li>Zhao CX, Liu JN, Wang J, Ren D, Yu J, Chen X, Li BQ, Zhang Q. A DeltaE = 0.63 V Bifunctional Oxygen Electrocatalyst Enables High-Rate and Long-Cycling Zinc-Air Batteries. <strong><em>Advanced Materials<\/em><\/strong> 2021, 33, e2008606, doi: 10.1002\/adma.202008606. <a href=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-PDF\/AM-2021-A%20deltaE%20%3D%200.63%20V%20Bifunctional%20Oxygen.pdf\" title=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-PDF\/AM-2021-A%20%CE%94E%20%3D%200.63%20V%20Bifunctional%20Oxygen%20Electrocatalyst%20Enables%20High-Rate%20and%20Long-Cycling%20Zinc%E2%80%93Air%20Batteries.pdf\">[PDF]<\/a><\/li><li>Chen Y, Wang T, Tian H, Su D, Zhang Q, Wang G. Advances in Lithium-Sulfur Batteries: From Academic Research to Commercial Viability. <strong><em>Advanced Materials<\/em><\/strong> 2021, e2003666, doi: 10.1002\/adma.202003666. <a href=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-06\/adma.202003666.pdf\">[PDF]<\/a><\/li><li>Zhao M, Chen X, Li X Y, Li B Q, Huang J Q. An Organodiselenide Comediator to Facilitate Sulfur Redox Kinetics in Lithium-Sulfur Batteries. <strong><em>Advanced Materials<\/em><\/strong> 2021, 33, e2007298, doi: 10.1002\/adma.202007298. <a href=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-06\/Zhao-2021-An-organodiselenide-comediator-to-f.pdf\">[PDF]<\/a><\/li><li>Liu J, Yuan H, Liu H, Zhao C Z, Lu Y, Cheng X B, Huang J Q, Zhang Q. Unlocking the Failure Mechanism of Solid State Lithium Metal Batteries. <strong><em>Advanced Energy Materials<\/em><\/strong> 2021, doi: 10.1002\/aenm.202100748. <a href=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-06\/Liu-2021-Unlocking-the-failure-mechanism-of-.pdf\">[PDF]<\/a><\/li><li>Lu Y, Zhao C Z, Yuan H, Cheng X B, Huang J Q, Zhang Q. Critical Current Density in Solid\u2010State Lithium Metal Batteries: Mechanism, Influences, and Strategies. <strong><em>Advanced Functional Materials<\/em><\/strong> 2021, 31, doi: 10.1002\/adfm.202009925. <a href=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-06\/Lu-2021-Critical-current-density-in-solidst.pdf\">[PDF]<\/a><\/li><li>Zhu G L, Zhao C Z, Peng H J, Yuan H, Hu J K, Nan H X, Lu Y, Liu X Y, Huang J Q, He C, Zhang J, Zhang Q. A Self\u2010Limited Free\u2010Standing Sulfide Electrolyte Thin Film for All\u2010Solid\u2010State Lithium Metal Batteries. <strong><em>Advanced Functional Materials<\/em><\/strong> 2021, doi: 10.1002\/adfm.202101985. <a href=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-06\/Zhu-2021-A-selflimited-freestanding-sulfide-.pdf\">[PDF]<\/a><\/li><li>Cai W, Yan C, Yao Y X, Xu L, Chen X R, Huang J Q, Zhang Q. The Boundary of Lithium Plating in Graphite Electrode for Safe Lithium-Ion Batteries. <strong><em>Angewandte Chemie International Edition<\/em><\/strong> 2021, 60, 13007, doi: 10.1002\/anie.202102593. <a href=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-06\/Cai-2021-The-boundary-of-lithium-plating-in-.pdf\">[PDF]<\/a><\/li><li>Zhang Q, Chen P Y, Yan C, Chen P, Zhang R, Yao Y X, Peng H J, Yan L T, Kaskel S. Selective Permeable Lithium-Ion Channels on Lithium Metal for Practical Lithium-Sulfur Pouch Cells. <strong><em>Angewandte Chemie International Edition<\/em><\/strong> 2021, doi: 10.1002\/anie.202101958. <a href=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-06\/Zhang-2021-Selective-permeable-lithiumion-chan.pdf\">[PDF]<\/a><\/li><li>Zhang X Q, Jin Q, Nan Y L, Hou L P, Li B Q, Chen X, Jin Z H, Zhang X T, Huang J Q, Zhang Q. Electrolyte Structure of Lithium Polysulfides with Anti-Reductive Solvent Shells for Practical Lithium-Sulfur Batteries. <strong><em>Angewandte Chemie International Edition<\/em><\/strong> 2021, doi: 10.1002\/anie.202103470. <a href=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-06\/Zhang-2021-Electrolyte-structure-of-lithium-po.pdf\">[PDF]<\/a><\/li><li>Zhao C X, Liu J N, Yao N, Wang J, Ren D, Chen X, Li B Q, Zhang Q. Can Aqueous Zinc-Air Batteries Work at Sub-Zero Temperatures? <strong><em>Angewandte Chemie International Edition<\/em><\/strong> 2021, doi: 10.1002\/anie.202104171. <a href=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-06\/Zhao-2021-Can-aqueous-zincair-batteries-work-.pdf\">[PDF]<\/a><\/li><li>Zhao C X, Liu J N, Wang J, Ren D, Li B Q, Zhang Q. Recent Advances of Noble-Metal-Free Bifunctional Oxygen Reduction and Evolution Electrocatalysts. <strong><em>Chemical Society Reviews<\/em><\/strong> 2021, doi: 10.1039\/d1cs00135c. <a href=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-06\/Zhao-2021-Recent-advances-of-noble-metal-free.pdf\">[PDF]<\/a><\/li><li>Shen X, Zhang R, Wang S, Cheng X, Zhao C, Kuzmina E, Karaseva E, Kolosnitsyn V, Zhang Q. The Dynamic Evolution of Aggregated Li Dendrites in Lithium Metal Batteries. <strong><em>Chinese Journal of Chemical Engineering<\/em><\/strong> 2021, doi: 10.1016\/j.cjche.2021.05.008. <a href=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-06\/Shen-2021-The-dynamic-evolution-of-aggregated.pdf\">[PDF]<\/a><\/li><li>Chen X-R, Yan C, Ding J-F, Peng H-J, Zhang Q. New Insights into \u201cDead Lithium\u201d During Stripping in Lithium Metal Batteries. <strong><em>Journal of Energy Chemistry<\/em><\/strong> 2021, 62, 289, doi: 10.1016\/j.jechem.2021.03.048. <a href=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-06\/Chen-2021-New-insights-into-dead-lithium-duri.pdf\">[PDF]<\/a><\/li><li>Li X-Y, Zhang Q. One Stone Two Birds: Dual-Effect Kinetic Regulation Strategy for Practical Lithium\u2013Sulfur Batteries. <strong><em>Journal of Energy Chemistry<\/em><\/strong> 2022, 65, 302, doi: 10.1016\/j.jechem.2021.05.039. <a href=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-06\/Li-2021-One-stone-two-birds-dual-effect-kin.pdf\">[PDF]<\/a><\/li><li>Shi P, Liu Z-Y, Zhang X-Q, Chen X, Yao N, Xie J, Jin C-B, Zhan Y-X, Ye G, Huang J-Q, Ifan E L S, Maria-Magdalena T, Zhang Q. Polar Interaction of Polymer Host\u2013Solvent Enables Stable Solid Electrolyte Interphase in Composite Lithium Metal Anodes. <strong><em>Journal of Energy Chemistry<\/em><\/strong> 2022, 64, 172, doi: 10.1016\/j.jechem.2021.04.045. <a href=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-06\/Shi-2022-Polar-interaction-of-polymer-hostso.pdf\">[PDF]<\/a><\/li><li>Song Y-W, Qin J-L, Zhao C-X, Zhao M, Hou L-P, Peng Y-Q, Peng H-J, Li B-Q. The Formation of Crystalline Lithium Sulfide on Electrocatalytic Surfaces in Lithium\u2013Sulfur Batteries. <strong><em>Journal of Energy Chemistry<\/em><\/strong> 2022, 64, 568, doi: 10.1016\/j.jechem.2021.05.023. <a href=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-06\/Song-2021-The-formation-of-crystalline-lithiu.pdf\">[PDF]<\/a><\/li><li>Yang S-J, Yao N, Xu X-Q, Jiang F-N, Chen X, Liu H, Yuan H, Huang J-Q, Cheng X-B. Formation Mechanism of the Solid Electrolyte Interphase in Different Ester Electrolytes. <strong><em>Journal of Materials Chemistry A<\/em><\/strong> 2021, doi: 10.1039\/d1ta02615a. <a href=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-06\/Yang-2021-Formation-mechanism-of-the-solid-el.pdf\">[PDF]<\/a><\/li><li>Wang X-M, Zhang X-Q, Shi P, Hou L-P, Zhou M-Y, Chen A, Zhang Q. Glycolide Additives Enrich Organic Components in the Solid Electrolyte Interphase Enabling Stable Ultrathin Lithium Metal Anodes. <strong><em>Materials Chemistry Frontiers<\/em><\/strong> 2021, 5, 2791, doi: 10.1039\/d0qm01134g. <a href=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-06\/Materials%20Chemi-2021-Glycollide%20additives%20enri.pdf\">[PDF]<\/a><\/li><li>Hou L-P, Zhang X-Q, Li B-Q, Zhang Q. Challenges and Promises of Lithium Metal Anode by Soluble Polysulfides in Practical Lithium\u2013Sulfur Batteries. <strong><em>Materials Today<\/em><\/strong> 2021, 45, 62, doi: 10.1016\/j.mattod.2020.10.021. <a href=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-06\/Hou-2021-Challenges-and-promises-of-lithium-.pdf\">[PDF]<\/a><\/li><li>Chen XR, Chen X, Yan C, Zhang XQ, Zhang Q, Huang JQ. Role of Lithiophilic Metal Sites in Lithium Metal Anodes. <strong><em>Energy &amp; Fuels<\/em><\/strong> 2021\uff0c35, 15, 12746\u201312752. doi: 10.1021\/acs.energyfuels.1c01602. <a href=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-10\/Energy%26Fuels-2021- Role%20of%20Lithiophilic%20Metal%20Sites%20in%20Lithium%20Metal%20Anodes.pdf\">[PDF]<\/a><\/li><li>Chen XR, Yan C, Ding JF, Peng HJ, Zhang Q. New insights into \u201cdead lithium\u201d during stripping in lithium metal batteries. <strong><em>Journal of Energy Chemistry<\/em><\/strong> 2021,62:289-94. doi:10.1016\/j.jechem.2021.03.048. <a href=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-10\/JEC-2021-New%20insights%20into%20%E2%80%98%E2%80%98dead%20lithium%E2%80%9D%20during%20stripping%20in%20lithium%20metal%20batteries.pdf\">[PDF]<\/a><\/li><li>Chen PY, Yan C, Chen P, Zhang R, Yao YX, Peng HJ, Yan LT, Kaskel S, Zhang Q. Selective Permeable Lithium\u2010ion Channels on Lithium Metal for Practical Lithium\u2013Sulfur Pouch Cells. <strong><em>Angewandte Chemie International Edition<\/em><\/strong> 2021, 60,18031\u201318036. doi:10.1002\/anie.202101958. <a href=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-10\/Angew-2021-SelectivePermeable%20Lithium-Ion%20Channels%20on%20Lithium%20Metal%20forPractical%20Lithium%E2%80%93Sulfur%20Pouch%20Cells.pdf\">[PDF]<\/a><\/li><li>Cai W L, Yan C, Yao YX, Xu L, Chen XR, Huang JQ, Zhang Q. The Boundary of Lithium Plating in Graphite Electrode for Safe Lithium\u2010Ion Batteries. <strong><em>Angewandte Chemie International Edition<\/em><\/strong> 2021, 60, 13007\u201313012. doi:10.1002\/anie.202102593. <a href=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-10\/Angew-2021-The%20Boundary%20of%20Lithium%20Plating%20in%20Graphite%20Electrode%20for%20Safe%20Lithium%E2%80%90Ion%20Batteries.pdf\">[PDF]<\/a><\/li><li>Lu Y, Zhao CZ, Zhang R, Yuan H, Hou LP, Fu ZH, Chen X, Huang JQ, Zhang Q. The Carrier Transition from Li Atoms to Li Vacancies in Solid-State Lithium Alloy Anodes, <strong><em>Science Advances<\/em><\/strong>, 2021, 7, eabi5520. doi: 10.1126\/sciadv.abi5520. <a href=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-10\/SA-2021-The%20Carrier%20Transition%20from%20Li%20Atoms%20to%20Li%20Vacancies%20in%20Solid-State%20Lithium%20Alloy%20Anodes.pdf\">[PDF]<\/a><\/li><li>Zhu, G.-L.,Zhao, C.-Z.,Peng, H.-J.,Yuan, H.,Hu, J.-K.,Nan, H.-X.,Lu, Y.,Liu, X.-Y.,Huang, J.-Q.,He, C.,Zhang, J.,Zhang, Q.,A Self-Limited Free-Standing Sulfide Electrolyte Thin Film for All-Solid-State Lithium Metal Batteries. <strong><em>Advanced Functional Materials<\/em><\/strong> 2021, 31, 2101985. doi: 10.1002\/adfm.202101985. <a href=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-10\/AFM-2021-A%20Self-Limited%20Free-Standing%20Sulfide%20Electrolyte%20Thin%20Film%20for%20All-Solid-State%20Lithium%20Metal%20Batteries.pdf\">[PDF]<\/a><\/li><li>Cheng XB, Liu H, Yuan H, Peng HJ, Tang C, Huang JQ, Zhang Q. A Perspective on Sustainable Energy Materials for Lithium Batteries. <strong><em>SusMat<\/em><\/strong> 2021, 1, 38, doi:10.1002\/sus2.4.<a href=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-11\/SusMat-2021-A-perspective-on-sustainable-energ.pdf\">[PDF]<\/a><\/li><li>\u8d75\u8fb0\u5b5c,\u8881\u6d2a,\u5362\u6d0b,\u5f20\u5f3a.\u56fa\u6001\u91d1\u5c5e\u9502\u8d1f\u6781\u754c\u9762\u7814\u7a76\u8fdb\u5c55[J\/OL]. <strong><em>\u5316\u5de5\u8fdb\u5c55<\/em><\/strong>: 1-15.http:\/\/kns.cnki.net\/kcms\/detail\/11.1954.TQ. 20210713.1136.002.html. <a href=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-10\/%E5%9B%BA%E6%80%81%E9%87%91%E5%B1%9E%E9%94%82%E8%B4%9F%E6%9E%81%E7%95%8C%E9%9D%A2%E7%A0%94%E7%A9%B6%E8%BF%9B%E5%B1%95_%E8%B5%B5%E8%BE%B0%E5%AD%9C.pdf\" title=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-10\/%E5%9B%BA%E6%80%81%E9%87%91%E5%B1%9E%E9%94%82%E8%B4%9F%E6%9E%81%E7%95%8C%E9%9D%A2%E7%A0%94%E7%A9%B6%E8%BF%9B%E5%B1%95_%E8%B5%B5%E8%BE%B0%E5%AD%9C.pdf\">[PDF]<\/a><\/li><li>Bi CX, Zhao M, Hou LP, Chen ZX, Zhang XQ, Li BQ, Yuan H, Huang JQ. Anode Material Options Toward 500 Wh kg<sup>\u22121<\/sup> Lithium-Sulfur Batteries. <strong><em>Advanced Science<\/em><\/strong> 2021, doi:10.1002\/advs.202103910. <a href=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-11\/AS-2021-Anode%20Material%20Options%20Toward%20500%20Wh%20kg%E2%88%921%20Lithium%E2%80%93Sulfur%20Batteries.pdf\">[PDF]<\/a><\/li><li>Zhao CX, Li XY, Zhao M, Chen ZX, Song YW, Chen WJ, Liu JN, Wang B, Zhang XQ, Chen CM, Li BQ, Huang JQ, Zhang Q. Semi-Immobilized Molecular Electrocatalysts for High-Performance Lithium-Sulfur Batteries. <strong><em>Journal of the American Chemical Society<\/em><\/strong> 2021, 143, 19865, doi:10.1021\/jacs.1c09107. <a href=\"https:\/\/www.qianggroup.com\/wp\/pdf\/0\/2021-11\/JACS-2021-Semi-Immobilized%20Molecular%20Electrocatalysts%20for%20High-Performance%20Lithium%E2%80%93Sulfur%20Batteries.pdf\">[PDF]<\/a><\/li><li>Zhang Q. A commentary of Lithium-metal batteries in <em>MIT Technology Review 2021<\/em>. <strong><em>Fundamental Research<\/em><\/strong> 2021, 836, doi: 10.1016\/j.fmre.2021.11.007. <a href=\"ftp:\/\/xyu3000580001@xyu3000580001.my3w.com\/htdocs\/wp\/pdf\/0\/2021-PDF\/FR-2021-A%20commentary%20of%20Lithium-metal%20batteries%20in%20MIT%20Technology%20Review%202021.pdf\" target=\"_blank\" rel=\"noopener\" title=\"\">[PDF]<\/a><\/li><\/ol>\n\n\n\n<p><\/p>\n","protected":false},"excerpt":{"rendered":"<p>Chen XR, Zhao BC, Yan C, Zhang Q. Review on Li Depositi [&hellip;]<\/p>\n","protected":false},"author":1,"featured_media":0,"parent":0,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":{"footnotes":""},"class_list":["post-2625","page","type-page","status-publish","hentry"],"aioseo_notices":[],"_links":{"self":[{"href":"https:\/\/www.qianggroup.com\/wp\/wp-json\/wp\/v2\/pages\/2625","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/www.qianggroup.com\/wp\/wp-json\/wp\/v2\/pages"}],"about":[{"href":"https:\/\/www.qianggroup.com\/wp\/wp-json\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"https:\/\/www.qianggroup.com\/wp\/wp-json\/wp\/v2\/users\/1"}],"replies":[{"embeddable":true,"href":"https:\/\/www.qianggroup.com\/wp\/wp-json\/wp\/v2\/comments?post=2625"}],"version-history":[{"count":25,"href":"https:\/\/www.qianggroup.com\/wp\/wp-json\/wp\/v2\/pages\/2625\/revisions"}],"predecessor-version":[{"id":3335,"href":"https:\/\/www.qianggroup.com\/wp\/wp-json\/wp\/v2\/pages\/2625\/revisions\/3335"}],"wp:attachment":[{"href":"https:\/\/www.qianggroup.com\/wp\/wp-json\/wp\/v2\/media?parent=2625"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}