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  • 陈江波1,应杰2,肖宇轩2,董缘1,Kenneth I.Ozoemena3,Silvia Lenaerts4,阳晓宇1,5(State Key Laboratory of Advanced Technology for Materials Synthesis and Processing,School of Materials Science and Engineering & Shenzhen Research Institute & Joint Laboratory for Marine Advanced Materials in Pilot National Laboratory for Marine Science and Technology(Qingdao),Wuhan University of Technology;School of Chemical Engineering and Technology,Sun Yat-sen University;Molecular Sciences Institute,School of Chemistry,University of the Witwatersrand;Research Group Sustainable Energy,Air and Water Technology,Department of Bioscience Engineering,University of Antwerp;School of Engineering and Applied Sciences,Harvard University).分级FeCoNi磷化物的计量设计及其高效析氧性能[J].Science China(Materials),2022,第10期
  • 何雷,徐珂,石萍萍,刘志博,张闻,叶琼(Jiangsu Key Laboratory for Science and Applications of Molecular Ferroelectrics and School of Chemistry and Chemical Engineering,Southeast University).一种罕见的三维杂化双金属卤化物铁电体:(3-Hydroxypyrrolidinium)2RbBiBr6[J].Science China(Materials),2022,第10期
  • 谷琛,李田田,谈朋,彭松松,江耀,刘晓勤,孙林兵(State Key Laboratory of Materials-Oriented Chemical Engineering,Jiangsu National Synergetic Innovation Center for Advanced Materials(SICAM),College of Chemical Engineering,Nanjing Tech University).在磁性纳米搅拌棒上生成强碱活性位点:用于酯交换反应的多功能集成型催化剂[J].Science China(Materials),2022,第10期
  • 赵一菲1,辛伟闻1,2,钱永超1,张哲华1,2,吴亚东1,2,林相斌1,2,孔祥玉1,江雷1,2,闻利平1,2(CAS Key Laboratory of Bio-inspired Materials and Interfacial Science,Technical Institute of Physics and Chemistry,Chinese Academy of Sciences;School of Future Technology,University of Chinese Academy of Sciences).具有抗酸腐蚀的“水泥-鹅卵石”结构纳流体膜用于渗透能转换[J].Science China(Materials),2022,第10期
  • 李晓辉1,2,杨利3,朱振宇2,王晓鸽2,陈柏桦2,黄森传4,魏先益1,蔡国鸿2,Pascal Manuel5,杨四海6,林建华2,匡小军1,3,孙俊良2(Guangxi Key Laboratory of Electrochemical and Magnetochemical Functional Materials,College of Chemistry and Bioengineering,Guilin University of Technology;College of Chemistry and Molecular Engineering,Peking University,Beijing National Laboratory for Molecular Science(BNLMS);MOE Key Laboratory of New Processing Technology for Nonferrous Metal and Materials,Guangxi Key Laboratory of Optical and Electronic Materials and Devices,Guangxi Universities Key Laboratory of Nonferrous Metal Oxide Electronic Functional Materials and Devices,College of Materials Science and Engineering,Guilin University of Technology;MOE Key Laboratory of Bioinorganic and Synthetic Chemistry,School of Chemistry,Sun Yat-Sen University;ISIS Facility,Science and Technology Facilities Council(STFC),Rutherford Appleton Laboratory;Department of Chemistry,University of Manchester).硼酸盐:氧离子导体设计的一个新方向[J].Science China(Materials),2022,第10期
  • 康鹤1,2,张燕辉1,吴云3,胡诗珂1,2,李晶1,2,陈志蓥1,隋妍萍1,王爽1,2,赵孙文1,2,肖润涵1,2,于广辉1,2,彭松昂4,金智4,刘新宇4(State Key Laboratory of Functional Materials for Informatics,Shanghai Institute of Microsystem and Information Technology,Chinese Academy of Sciences;Center of Materials Science and Optoelectronics Engineering,University of Chinese Academy of Sciences;Science and Technology on Monolithic Integrated Circuits and Modules Laboratory,Nanjing Electronic Device Institute;Microwave Devices and Integrated Circuits Department,Institute of Microelectronics,Chinese Academy of Sciences).通过亚甲基蓝表面修饰实现对生长在铂上的石墨烯的无损可视化[J].Science China(Materials),2022,第10期
  • 肖炼1,杜全超2,黄毅3,程士嘉1,尹帅4,Teck Neng Wong4,Edwin Kok Lee Yeow2,孙汉东1,5(Division of Physics and Applied Physics,School of Physical and Mathematical Sciences,Nanyang Technological University;Division of Chemistry and Biological Chemistry,School of Physical and Mathematical Sciences,Nanyang Technological University;Research Institute of Aero-Engine,Beihang University;School of Mechanical and Aerospace Engineering,Nanyang Technological University;MajuLab,International Joint Research Unit UMI 3654,CNRS,Université C?te d'Azur,Sorbonne Université,National University of Singapore,Nanyang Technological University).通过可控的裂变-聚合策略合成紫外光到蓝光发射的硫纳米点[J].Science China(Materials),2022,第10期
  • Shuang-Qin Chen,Ke-Zhen Hui,Liang-Zheng Dong,Zhun Li,Qing-hua Zhang,Lin Gu,Wei Zhao,Si Lan,Yubin Ke,Yang Shao,Horst Hahn,Ke-Fu Yao(Herbert Gleiter Institute of Nanoscience;School of Material Science and Enginering;China Iron&Steel Research Institute Group;Bejing Laboratory for Electron Microscopy;Institute of Nanotechnology;China Spllation Neutron Source Instute of High Energy Physics).Erratum to:Excellent long-term reactivity of inhomogeneous nanoscale Fe-based metallic glass in wastewater purification(vol 63,issue 3,pg 453-466,2020)[J].中国科学:材料科学(英文版),2022,第10期
  • 李薇馨1,2,3,晏建民1,王聪1,张宁1,蔡子轩1,刘苏4,赵雷2,陶肖明5,4,柴扬1,3,5(Department of Applied Physics,The Hong Kong Polytechnic University;The State Key Laboratory of Refractories and Metallurgy,School of Materials and Metallurgy,Wuhan University of Science and Technology;The Hong Kong Polytechnic University Shenzhen Research Institute;Institute of Textiles and Clothing,The Hong Kong Polytechnic University;Research Center of Intelligent Wearable Systems,The Hong Kong Polytechnic University).分子桥连石墨烯/银用于高性能导电浆料[J].Science China(Materials),2022,第10期
  • 吴疆1,2,陈鹏1,徐涵3,喻茂滔1,李雷1,鄢浩明1,皇甫一鸣2,肖云1,4,杨晓宇1,赵丽宸1,王玮3,5,龚旗煌1,2,6,朱瑞1,2,6(State Key Laboratory for Artificial Microstructure and Mesoscopic Physics;Peking University Yangtze Delta Institute of Optoelectronics;School of Integrated Circuits;Department of Physics;National Key Laboratory of Science and Technology on Micro/Nano Fabrication;Collaborative Innovation Center of Extreme Optics).超轻薄柔性钙钛矿电池[J].Science China(Materials),2022,第9期
  • 李桐1,张建军1,李崇兴1,赵涵1,张晶2,钱钊1,尹龙卫1,王儒涛1,3,4(Key Laboratory for Liquid-Solid Structural Evolution and Processing of Materials;Shandong Key Laboratory for Special Silicon-containing Material;Suzhou Institute of Shandong University;CAS Key Laboratory of Carbon Materials).高储锂性能的氮、磷共掺杂分级多孔炭纳米球用于高比能锂离子电容器[J].Science China(Materials),2022,第9期
  • 孙双杰1,田庆利1,米皓阳1,2,李鋆1,经鑫2,郭占虎3,刘春太1,申长雨1(National Engineering Research Center for Advanced Polymer Processing Technology;Integrated Composites Laboratory(ICL);Key Laboratory of Advanced Packaging Materials and Technology of Hunan Province).高蒸发速率的耐盐织物基全天候可用光热-电热蒸发器[J].Science China(Materials),2022,第9期
  • 彭钟有1,郭俊晞2,何其昌1,李舒龙1,谈利承1,陈义旺1,3(College of Chemistry and Chemical Engineering/Institute of Polymers and Energy Chemistry(IPEC);Institute of Advanced Scientific Research(iASR)/Key Lab of Fluorine and Silicon for Energy Materials and Chemistry of Ministry of Education;School of Future Technology).具有双离子吸附的多级结构氮掺杂碳球助力超高倍率及稳定的锌离子超级电容器[J].Science China(Materials),2022,第9期
  • 陈稳霞1,胡应杰1,2,彭鹏3,崔金海1,王军梅1,魏伟1,张永亚1,欧思聪4,臧双全3(School of Chemistry and Chemical Engineering,Henan Engineering Center of New Energy Battery Materials,Shangqiu Normal University;Key Laboratory of Advanced Functional Materials of Nanjing,Nanjing Xiaozhuang University;Henan Key Laboratory of Crystalline Molecular Functional Materials,Henan International Joint Laboratory of Tumor Theranostical Cluster Materials,Green Catalysis Center and College of Chemistry,Zhengzhou University;School of Chemistry and Physics and Centre for Materials Science,Queensland University of Technology).多维镍钴硫化物异质结电催化剂用于高效全水解[J].Science China(Materials),2022,第9期
  • 陈蕾,任金涛,袁忠勇(Key Laboratory of Advanced Energy Materials Chemistry (Ministry of Education),National Institute for Advanced Materials,School of Materials Science and Engineering,Nankai University).界面工程用于提高CoP-Co2P多晶型物在全pH值析氢反应和碱性全解水反应中的电催化性能[J].Science China(Materials),2022,第9期
  • 吴子轩1,丁琼玲1,李振毅1,周子敬1,罗璐琪1,陶凯2,谢曦1,吴进1(State Key Laboratory of Optoelectronic Materials and Technologies and the Guangdong Province Key Laboratory of Display Material and Technology;The Ministry of Education Key Laboratory of Micro and Nano Systems for Aerospace).基于离子导电双网络水凝胶薄膜的超灵敏、可拉伸、透明湿度传感器[J].Science China(Materials),2022,第9期
  • 贾宇杰1,2,管清宝2,3,张璐之2,Neisiany Rasoul Esmaeely4,严旎娜5,李亚1,游正伟2(College of Chemistry and Chemical Engineering;State Key Laboratory for Modification of Chemical Fibers and Polymer Materials;State Key Laboratory of Molecular Engineering of Polymers(Fudan University);Department of Materials and Polymer Engineering;Institute of Agricultural Facilities and Equipment).一种具有优良自愈合性和再加工性的富氟聚酚氨酯弹性体及其在可穿戴电子领域的应用[J].Science China(Materials),2022,第9期
  • 陈自龙1,曾浩1,储冬冬1,2,张方方1,2,程孟1,2,杨志华1,2,潘世烈1,2(CAS Key Laboratory of Functional Materials and Devices for Special Environments,Xinjiang Technical Institute of Physics and Chemistry,CAS,Xinjiang Key Laboratory of Electronic Information Materials and Devices;Center of Materials Science and Optoelectronics Engineering,University of Chinese Academy of Sciences).LiB5O5F2(OH)4:一种新的含有[B5O5F2(OH)4]阴离子基团的深紫外双折射晶体[J].Science China(Materials),2022,第9期
  • 宋颖斌1,来华1,焦小雨2,刘鹏昌3,胡栋栋1,康红军1,张东杰1,樊志敏1,谢志民4,刘宇艳1,江雷5,成中军1(State Key Laboratory of Urban Water Resource & Environment,School of Chemistry and Chemical Engineering,Harbin Institute of Technology;Shanghai Institute of Space Power-sources/State Key Laboratory of Space Power-sources Technology;41 Institute of the Sixth Research Institute of China Aerospace Science and Industry Corporation;National Key Laboratory of Science and Technology on Advanced Composites in Special Environments,Harbin Institute of Technology;CAS Key Laboratory of Bio-Inspired Materials and Interfacial Science,Technical Institute of Physics and Chemistry,Chinese Academy of Sciences).基于形状记忆海绵的“门控”液体二极管[J].Science China(Materials),2022,第9期
  • 龚越涵,王咸文,巩飞,李光强,杨雨琦,侯林倩,张桥,刘庄,程亮(Institute of Functional Nano&Soft Materials(FUNSOM)).酞菁铁纳米点用于化学催化-声动力肿瘤联合治疗[J].Science China(Materials),2022,第9期
  • 周祥青1,章文峰1,汪松2,文芳1,陈谦1,申小龙1,胡鑫1,彭长涛1,马柱1,张萌1,黄跃龙1,杨上峰3,张文华4(Institute of Photovoltaic,Southwest Petroleum University;College of Environment and Resources,Chongqing Technology and Business University;Department of Materials Science and Engineering,University of Science and Technology of China;Yunnan Key Laboratory of Carbon Neutrality and Green Low-carbon Technologies,School of Materials and Energy,Yunnan University).通过Y3N@C80内嵌金属富勒烯修饰调节钙钛矿太阳能电池的界面性质[J].Science China(Materials),2022,第9期
  • 孙金燃1,2,张舒1,张庆华3,辛云川1,董杉木1,刘海胜1,李杰东1,王超1,鲁承龙1,杨武海1,刘亭亭1,2,马君1,谷林3,崔光磊1,2(Qingdao Industrial Energy Storage Research Institute;Center of Materials Science and Optoelectronics Engineering;Beijing National Laboratory for Condensed Matter Physics).LiF引发选择性锂化提升硅碳负极可逆容量[J].Science China(Materials),2022,第9期
  • 施启涛1,叶伟彬2,Kurtyka Klaudia3,王海明1,连雪玉1,Quang Ta Huy4,周军华1,杨晓琴5,郭伶俐1,Trzebicka Barbara3,孙靖宇1,刘立军5,王鸣生2,H.Rümmeli Mark1,3,5,6(Soochow Institute for Energy and Materials Innovation;State Key Lab of Physical Chemistry of Solid Surfaces;Centre of Polymer and Carbon Materials;Institute for Complex Materials;School of Energy and Power Engineering;Institute of Environmental Technology).石墨烯空心球的弹性缓冲效应助力高性能硅基锂离子电池[J].Science China(Materials),2022,第9期
  • 于杰1,2,陈新宇2,王恒国1,高波2,韩东来2,司振君2(Key Laboratory of Polyoxometalate and Reticular Material Chemistry of Ministry of Education and Faculty of Chemistry;School of Materials Science and Engineering).多电子反应的共轭梯型聚合物作为高容量锂离子电池有机负极材料[J].Science China(Materials),2022,第9期
  • 黄丽梅1,李豪2,王新新1,丁元力1,王建锋1,江雷3(College of Materials Science and Engineering,Hunan University;College of Chemistry and Chemical Engineering,Hunan University;CAS Key Laboratory of Bio-Inspired Materials and Interface Sciences,Technical Institute of Physics and Chemistry,Chinese Academy of Sciences).珠磨驱动微晶石墨自研磨高效制备小尺寸石墨烯作为导电添加剂[J].Science China(Materials),2022,第9期
  • 谷亚东1,2,周孟虎1,3,张孟迪4,吴彦伟5,阮彬彬1,3,侯兴元5,张凡1,2,江培杰1,2,杨清松1,2,李更1,2,马明伟1,2,陈根富1,2,单磊5,6,任治安1,2(Institute of Physics and Beijing National Laboratory for Condensed Matter Physics;School of Physical Sciences;Songshan Lake Materials Laboratory;Beijing Academy of Quantum Information Sciences;Information Materials and Intelligent Sensing Laboratory of Anhui Province;Key Laboratory of Structure and Functional Regulation of Hybrid Materials of Ministry of Education).通过微量锰掺杂直接合成体超导的Fe(Te,Se)单晶[J].Science China(Materials),2022,第9期
  • 邱智健,崔永朋,王丹丹,王业胜,胡浩宇,李学进,蔡同辉,高秀丽,胡涵,吴明铂,薛庆忠,阎子峰,邢伟(State Key Laboratory of Heavy Oil Processing).在宽电压窗口下实现高能量密度和超长循环寿命的双碳基锂离子电容器[J].Science China(Materials),2022,第9期
  • 唐丹雷,袁利霞,廖亚祺,靳文轩,陈杰,程泽晓,李想,何斌,李真,黄云辉(State Key Laboratory of Materials Processing and Die & Mould Technology,School of Materials Science and Engineering,Huazhong University of Science and Technology).利用Cu3N改性铜箔集流体提高锂金属负极的循环稳定性[J].Science China(Materials),2022,第9期
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