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james crawshaw, and s. ravi p. silva(Advanced Technology Institute,University of Surrey).CO2 Emissions Post-COP26: Who is Responsible to Curb the Flow? Does it Matter if We Can Make it a Win-Win?[J].Energy & Environmental Materials,2022,第3期
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Yanan Xu1,2,Xiaofeng Liu1,2,Hang Su1,2,Shan Jiang1,2,Jianmin Zhang1,2,Dan Li1,2(College of Chemistry, Zhengzhou University;Green Catalysis Center, College of Chemistry, Zhengzhou University).Hierarchical Bimetallic Selenides CoSe2–MoSe2/rGO for Sodium/Potassium-Ion Batteries Anode:Insights into the Intercalation and Conversion Mechanism[J].Energy&Environmental Materials,2022,第2期
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Liyuan Tian1,Ze Zhang2,Sheng Liu1,Guoran Li1,Xueping Gao1(Institute of New Energy Material Chemistry, School of Materials Science and Engineering, Renewable Energy Conversion and Storage Center, Nankai University;College of Chemistry, Key Laboratory of Jiangxi Province for Environment and Energy Catalysis, Nanchang University).High-Entropy Spinel Oxide Nanofibers as Catalytic Sulfur Hosts Promise the High Gravimetric and Volumetric Capacities for Lithium–Sulfur Batteries[J].Energy&Environmental Materials,2022,第2期
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Qing Shi1,2,Qiao Liu1,Yapeng Zheng1,Yaqian Dong1,Lin Wang1,Hantao Liu2,Weiyou Yang1(Institute of Materials;School of Energy and Power Engineering).Controllable Construction of Bifunctional CoxP@N,P-Doped Carbon Electrocatalysts for Rechargeable Zinc–Air Batteries[J].Energy&Environmental Materials,2022,第2期
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Kevin W.Gao1,2,3,Chao Fang2,3,David M.Halat2,3,Aashutosh Mistry3,4,John Newman1,2,Nitash P.Balsara1,2,3(Materials Sciences Division;Department of Chemical and Biomolecular Engineering;Joint Center for Energy Storage Research;Chemical Sciences and Engineering Division).The Transference Number[J].Energy&Environmental Materials,2022,第2期
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Xiaodan Li1,Jinliang Li1,Liang Ma1,Caiyan Yu2,Zhong Ji1,Likun Pan3,Wenjie Mai1(Department of Physics;nternational Joint Laboratory of Renewable Energy Materials and Devices of Henan Province;Shanghai Key Laboratory of Magnetic Resonance).Graphite Anode for Potassium Ion Batteries:Current Status and Perspective[J].Energy&Environmental Materials,2022,第2期
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Qian Zhu1,2,Jingping Hu1,2,3,Bingchuan Liu1,2,Shaogang Hu1,2,Sha Liang1,2,Keke Xiao1,2,Jiakuan Yang1,2,3,Huijie Hou1,2(School of Environmental Science and Engineering;Hubei Provincial Engineering Laboratory of Solid Waste Treatment;State Key Laboratory of Coal Combustion).Recent Advances on the Development of Functional Materials in Microbial Fuel Cells:From Fundamentals to Challenges and Outlooks[J].Energy&Environmental Materials,2022,第2期
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Xuhui Yao1,Tomá? ?amo■il2,Ji■í Dluho?2,John F. Watts3,Zhijia Du4,Bohang Song5,S. Ravi P. Silva1,Tan Sui3,Yunlong Zhao1,6(Advanced Technology Institute;TESCAN ORSAY HOLDING;Department of Mechanical Engineering Sciences;Energy and Transportation Science Division;Neutron Scattering Division;National Physical Laboratory).Degradation Diagnostics from the Subsurface of Lithium-Ion Battery Electrodes[J].Energy&Environmental Materials,2022,第2期
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Pengbiao Geng1;Meng Du1;Xiaotian Guo1;Huan Pang1;Ziqi Tian2;Pierre Braunstein3;Qiang Xu1,4,5(School of Chemistry and Chemical Engineering, Yangzhou University;Ningbo Institute of Materials Technology and Engineering, Chinese Academy of Sciences;Laboratoire de Chimie de Coordination, CNRS, CHIMIE;Department of Materials Science and Engineering and SUSTech Academy for Advanced Interdisciplinary Studies, Southern University of Science and Technology (SUSTech), Xueyuan Ave, Nanshan;Institute for Integrated Cell-Material Sciences (iCeMS), Kyoto University).Bimetallic Metal-Organic Framework with High-Adsorption Capacity toward Lithium Polysulfides for Lithium–sulfur Batteries[J].Energy&Environmental Materials,2022,第2期
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Jun Zhao1,Yongfu Tang1,2,Qiushi Dai1,Congcong Du1,Yin Zhang3,Dingchuan Xue4,Tianwu Chen4,Jingzhao Chen1,Bo Wang1,Jingming Yao1,Ning Zhao5,Yanshuai Li1,Shuman Xia3,Xiangxin Guo5,Stephen J.Harris6,Liqiang Zhang1,Sulin Zhang4,Ting Zhu3,Jianyu Huang7(Clean Nano Energy Center;Woodruff School of Mechanical Engineering;Department of Engineering Science and Mechanics;Energy Storage Division;College of Physics;Hebei Key Laboratory of Applied Chemistry;School of Materials Science and Engineering).In situ Observation of Li Deposition-Induced Cracking in Garnet Solid Electrolytes[J].Energy&Environmental Materials,2022,第2期
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Jeong Seok Yeon1,Young Hun Ko1,Tae Ho Park1,2,Hyunyoung Park3,Jongsoon Kim3,Ho Seok Park1,4(School of Chemical Engineering;Advanced Batteries Research Center;Department of Energy Science;Department of Health Sciences and Technology).Multidimensional Hybrid Architecture Encapsulating Cobalt Oxide Nanoparticles into Carbon Nanotube Branched Nitrogen-Doped Reduced Graphene Oxide Networks for Lithium–Sulfur Batteries[J].Energy&Environmental Materials,2022,第2期
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Jianyun Zheng1,Li Jiang1,Yanhong Lyu2,San Ping Jiang3,Shuangyin Wang1(State Key Laboratory of Chem/Bio-Sensing and Chemometrics;Department of Educational Science;Curtin University).Green Synthesis of Nitrogen-to-Ammonia Fixation:Past,Present, and Future[J].Energy&Environmental Materials,2022,第2期
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Ning Liu1,Liang Hao1,Boyi Zhang1,Ran Niu1,Jiang Gong1,Tao Tang2(Key Laboratory of Material Chemistry for Energy Conversion and Storage;State Key Laboratory of Polymer Physics and Chemistry).Rational Design of High-Performance Bilayer Solar Evaporator by Using Waste Polyester-Derived Porous Carbon-Coated Wood[J].Energy&Environmental Materials,2022,第2期
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Pengju Li1,2,Yanglin Shen2,Ximing Li1,Wenhuan Huang1,Xing Lu2(Shaanxi Key Laboratory of Chemical Additives for Industry;State Key Laboratory of Materials Processing and Die&Mould Technology).Fullerene-Intercalated Graphitic Carbon Nitride as a High-Performance Anode Material for Sodium-Ion Batteries[J].Energy&Environmental Materials,2022,第2期
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Siling Cheng1,Kaitong Yao1,Kunxiong Zheng1,Qifei Li1,Dong Chen1,Yu Jiang1,2,Weiling Liu3,Yuezhan Feng4,Xianhong Rui1,Yan Yu2,5(School of Materials and Energy;Hefei National Laboratory for Physical Sciences at the Microscale;School of Materials Science and Engineering;Key Laboratory of Materials Processing and Mold;Dalian National Laboratory for Clean Energy(DNL)).Self-Assembled VS4 Hierarchitectures with Enhanced Capacity and Stability for Sodium Storage[J].Energy&Environmental Materials,2022,第2期
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Jing Ma1,Jie Su1,Zhenhua Lin1,Jian He1,Long Zhou1,Tao Li2,Jincheng Zhang1,3,Shengzhong Liu4,Jingjing Chang1,3,Yue Hao1(State Key Discipline Laboratory of Wide Band Gap Semiconductor Technology;Advanced Interdisciplinary Research Center for Flexible Electronics;Centre for Spintronics and Quantum System;Key Laboratory of Applied Surface and Colloid Chemistry).Double Side Interfacial Optimization for Low-Temperature Stable CsPbI2Br Perovskite Solar Cells with High Efficiency Beyond 16%[J].Energy&Environmental Materials,2022,第2期
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Ying Liu1,2,Lingyang Liu2,Long Kang1,Fen Ran1(State Key Laboratory of Advanced Processing and Recycling of Non-ferrous Metals;Shandong Provincial Key Laboratory of Chemical Energy Storage and Novel Cell Technology).Energy Storage Mechanism of Vanadium Nitride via Intercalating Different Atomic Radius for Expanding Interplanar Spacing[J].Energy&Environmental Materials,2022,第2期
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Yihang Yao, Zhaoyuan Zhang, and Lifang Jiao(Key Laboratory of Advanced Energy Materials Chemistry(Ministry of Education)).Development Strategies in Transition Metal Borides for Electrochemical Water Splitting[J].Energy&Environmental Materials,2022,第2期
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Xin Tan, Shaowen Wu, Yuanzhi Li* , Qian Zhang, Qianqian Hu, Jichun Wu, An Zhang, and Yongdi Zhang(State Key Laboratory of Silicate Materials for Architectures).Highly Efficient Photothermocatalytic CO2 Reduction in Ni/Mg-Doped Al2O3 with High Fuel Production Rate, Large Light-to-Fuel Efficiency, and Good Durability[J].Energy&Environmental Materials,2022,第2期
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Honghui Wu1,Fangping Zhuo2,Huimin Qiao3,Lalitha Kodumudi Venkataraman2,Mupeng Zheng4,Shuize Wang1,He Huang5,Bo Li5,Xinping Mao1,Qiaobao Zhang6(Beijing Advanced Innovation Center for Materials Genome Engineering;Department of Materials and Earth Sciences;School of Advanced Materials and Engineering;Key Laboratory of Advanced Functional Materials;School of Materials Science and Engineering;Department of Materials Science and Engineering).Polymer-/Ceramic-based Dielectric Composites for Energy Storage and Conversion[J].Energy&Environmental Materials,2022,第2期
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Shengyao Lv1,2,Chunxiang Huang1,2,Guoliang Li2,Liming Yang1(Hubei Key Laboratory of Bioinorganic Chemistry and Materia Medica;Key Laboratory of Theoretical Chemistry of Environment).Unveiling the Underlying Mechanism of Transition Metal Atoms Anchored Square Tetracyanoquinodimethane Monolayers as Electrocatalysts for N2 Fixation[J].Energy&Environmental Materials,2022,第2期
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Yangjun Mao1,Xiao Chen1,Hao Cheng1,Yunhao Lu2,Jian Xie1,Tao Zhang3,Jian Tu4,Xiongwen Xu4,Tiejun Zhu1,Xinbing Zhao1(State Key Laboratory of Silicon Materials;Department of Physics;State Key Lab of High Performance Ceramics and Superfine Microstructure;LI-FUN Technology Corporation Limited).Forging Inspired Processing of Sodium-Fluorinated Graphene Composite as Dendrite-Free Anode for Long-Life Na–CO2 Cells[J].Energy&Environmental Materials,2022,第2期
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Jiexin Zhu1,Lixue Xia2,Wenxuan Yang1,Ruohan Yu1,Wei Zhang1,Wen Luo1,Yuhang Dai1,Wei Wei1,Liang Zhou3,Yan Zhao2,Liqiang Mai3(State Key Laboratory of Advanced Technology for Materials Synthesis and Processing;International School of Materials Science and Engineering;Foshan Xianhu Laboratory of the Advanced Energy Science and Technology Guangdong Laboratory).Activating Inert Sites in Cobalt Silicate Hydroxides for Oxygen Evolution through Atomically Doping[J].Energy&Environmental Materials,2022,第2期
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Yu Ma1,2,Ding Chen3,Weijun Li2,Yapeng Zheng2,Lin Wang2,Gang Shao4,Qiao Liu2,Weiyou Yang2(College of Materials Science and Engineering;State Key Laboratory of Advanced Design and Manufacturing for Vehicle Body;Institute of Materials;School of Materials Science and Engineering).Highly Dispersive Co@N-C Catalyst as Freestanding Bifunctional Cathode for Flexible and Rechargeable Zinc–air Batteries[J].Energy&Environmental Materials,2022,第2期
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Nanfu Yan1,Xueping Gao2(Institute of Applied Chemistry;Institute of New Energy Material Chemistry).Photo-assisted Rechargeable Metal Batteries for Energy Conversion and Storage[J].Energy&Environmental Materials,2022,第2期
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Rajapakshe Mudiyanselage Indrachapa Bandara , Shashini M. Silva, Cameron C. L.Underwood , K. D. G. Imalka Jayawardena , Radu A. Sporea , and S. Ravi P. Silva(Advanced Technology Institute).Progress of Pb-Sn Mixed Perovskites for Photovoltaics:A Review[J].Energy&Environmental Materials,2022,第2期
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Kang Xu , and Guosheng Shao.Editor’s Note on “Frontier Outlook” Column[J].Energy&Environmental Materials,2022,第2期
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Xueping Liu1,2,Thomas Webb2,Linjie Dai3,Kangyu Ji3,Joel A.Smith4,5,Rachel C.Kilbride4,Mozhgan Yavari2,Jinxin Bi2,Aobo Ren2,Yuanyuan Huang1,Zhuo Wang1,Yonglong Shen1,Guosheng Shao1,Stephen J.Sweeney6,Steven Hinder7,Hui Li8,David G.Lidzey4,Samuel D.Stranks3,9,Neil C.Greenham3,S.Ravi P.Silva2,Wei Zhang2(State Center for International Cooperation on Designer Low-carbon & Environmental Materials (CDLCEM),Zhengzhou University;Advanced Technology Institute,Department of Electrical and Electronic Engineering,University of Surrey;Cavendish Laboratory,University of Cambridge;Department of Physics and Astronomy,University of Sheffield;Department of Physics,University of Oxford,Clarendon Laboratory;Advanced Technology Institute and Department of Physics,University of Surrey;The Surface Analysis Laboratory,Department of Mechanical Engineering Sciences,University of Surrey;Institute of Electrical Engineering,Chinese Academy of Sciences;Department of Chemical Engineering and Biotechnology,University of Cambridge).Influence of Halide Choice on Formation of Low-Dimensional Perovskite Interlayer in Efficient Perovskite Solar Cells[J].能源与环境材料(英文),2022,第2期
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Zhenjiang Cao,Yongzheng Zhang,Yanglansen Cui,Jianan Gu,Zhiguo Du,Yongzheng Shi,Kai Shen,Hao Chen,Bin Li,Shubin Yang(School of Materials Science and Engineering,Beihang University).Harnessing the Unique Features of 2D Materials toward Dendrite-free Metal Anodes[J].Energy & Environmental Materials,2022,第1期
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Yuxin Gao1,Zhexuan Liu1,Shan Guo1,Xinxin Cao1,2,Guozhao Fang1,2,Jiang Zhou1,2,Shuquan Liang1,2(School of Materials Science and Engineering,Central South University;Key Laboratory of Electronic Packaging and Advanced Functional Materials of Hunan Province,Central South University).Fundamental Understanding and Effect of Anionic Chemistry in Zinc Batteries[J].Energy & Environmental Materials,2022,第1期
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