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检索条件"机构=Department of Materials Science and Engineering and Advanced Materials Technology Program"
17825 条 记 录,以下是501-510 订阅
排序:
Effect of solid-solution strengthening on deformation mechanisms and strain hardening in medium-entropy V_(1-x)Cr_(x)CoNi alloys
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Journal of materials science & technology 2022年 第13期108卷 270-280页
作者: Hyun Chung Dae Woong Kim Woo Jin Cho Heung Nam Han Yuji Ikeda Shoji Ishibashi Fritz Körmann Seok Su Sohn Department of Materials Science and Engineering Korea UniversitySeoul 02841South Korea Center for High Entropy Alloys Pohang University of Science and TechnologyPohang 37673South Korea Department of Materials Science and Engineering and Research Institute of Advanced Materials Seoul National UniversitySeoul 08826South Korea Institute for Materials Science University of StuttgartPfaffenwaldring 55Stuttgart 70569Germany Computational Materials Design Max-Planck-Institut für Eisenforschung GmbHMax-Planck-Strabe 1Düsseldorf 40237Germany Research Center for Computational Design of Advanced Functional Materials(CD-Fmat) National Institute of Advanced Industrial Science and Technology(AIST)TsukubaIbaraki 305-8568Japan Department of Materials Science and Engineering Delft University of TechnologyMekelweg2Delft 2628 CDthe Netherlands
High-and medium-entropy alloys(HEAs and MEAs)possess high solid-solution *** investigations have been conducted on its impact on yield strength,however,there are limited reports regarding the relation between solid-so... 详细信息
来源: 评论
Anionic entanglement-induced giant thermopower in ionic thermoelectric material Gelatin-CF_(3)SO_(3)K–CH_(3)SO_(3)K
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escience 2023年 第5期3卷 105-112页
作者: Qikai Li Cheng-Gong Han Shuaihua Wang Cai-Chao Ye Xinbo Zhang Xiao Ma Tao Feng Yuchen Li Weishu Liu Department of Materials Science and Engineering Southern University of Science and TechnologyShenzhenGuangdong 518055China Shenzhen Engineering Research Center for Novel Electronic Information Materials and Devices Southern University of Science and TechnologyShenzhen 518055China Department of Mechanical Engineering The University of Hong KongPokfulam Road 999077Hong KongChina Center for Advanced Analytical Science Guangzhou Key Laboratory of Sensing Materials and DevicesGuangdong Engineering Technology Research Center for Photoelectric Sensing Materials and DevicesSchool of Chemistry and Chemical EngineeringGuangzhou UniversityGuangzhou 510006China
Ionic thermoelectric(i-TE)technologies can power Internet of Things(IoT)sensors by harvesting thermal energy from the environment because of their large *** research focuses mostly on using the interactions between io... 详细信息
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Quasi-Solid-State Na-O2 Battery with Composite Polymer Electrolyte
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ACS Applied materials and Interfaces 2024年 第28期16卷 36289-36294页
作者: Iputera, Kevin Tsai, Cheng-Fu Huang, Jheng-Yi Wei, Da-Hua Liu, Ru-Shi Department of Chemistry National Taiwan University Taipei106 Taiwan Department of Mechanical Engineering and Institute of Manufacturing Technology National Taipei University of Technology Taipei106 Taiwan Advanced Research Center For Green Materials Science and Technology Taipei106 Taiwan
Na-O2 batteries have emerged as promising candidates due to their high theoretical energy density (1,601 Wh kg-1), the potential for high energy storage efficiency, and the abundance of sodium in the earth’s crust. C... 详细信息
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Interface engineering and Anion engineering of Mo-Based Heterogeneous Electrocatalysts for Hydrogen Evolution Reaction
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Energy & Environmental materials 2023年 第1期6卷 87-104页
作者: Zehao Yin Xuan Liu Siru Chen Tingli Ma Yanqiang Li State Key Laboratory of Fine Chemicals School of Chemical EngineeringDalian University of TechnologyPanjin CampusPanjin 124221China School of Material and Chemical Engineering Centre for Advanced Materials ResearchZhongyuan University of TechnologyZhengzhou 450007China Department of Materials Science and Engineering China Jiliang UniversityHangzhou 310018China Graduate School of Life Science and Systems Engineering Kyushu Institute of TechnologyKitakyushu Fukuoka 808-0196Japan
Development and utilization of hydrogen energy is an effective way to achieve carbon neutrality,only hydrogen production through electrolytic water splitting meets the goal of zero carbon *** facilitate the large-scal... 详细信息
来源: 评论
Microstructure and Mechanical Properties of Ti–Ta Composites Prepared Through Cold Spray Additive Manufacturing
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Acta Metallurgica Sinica(English Letters) 2022年 第9期35卷 1465-1476页
作者: Junrong Tang Naeem ul Haq Tariq Zhipo Zhao Mingxiao Guo Hanhui Liu Yupeng Ren Xinyu Cui Yanfang Shen Jiqiang Wang Tianying Xiong Shi-changxu Innovation Center for Advanced Materials Institute of Metal ResearchChinese Academy of SciencesShenyang110016China School of Materials Science and Engineering University of Science and Technology of ChinaShenyang110016China Department of Metallurgy and Materials Engineering Pakistan Institute of Engineering and Applied SciencesNiloreIslamabadPakistan
In this study, an innovative approach was used to fabricate Ti–Ta composite biomaterials through cold spray additive manufacturing followed by a diff usion treatment. The microstructure and mechanical properties of t... 详细信息
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Composing atomic transition metal sites for high-performance bifunctional oxygen electrocatalysis in rechargeable zinc-air batteries
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Particuology 2023年 第6期77卷 146-152页
作者: Juan Wang Chang-Xin Zhao Jia-Ning Liu Ding Ren Xinzhi Ma Bo-Quan Li Jia-Qi Huang Qiang Zhan School of Materials Science and Engineering Beijing Institute of TechnologyBeijing100081China Advanced Research Institute of Multidisciplinary Science Beijing Institute of TechnologyBeijing100081China Beijing Key Laboratory of Green Chemical Reaction Engineering and Technology Department of Chemical EngineeringTsinghua UniversityBeijing100084China Key Laboratory for Photonic and Electronic Bandgap Materials Ministry of EducationSchool of Physics and Electronic EngineeringHarbin Normal UniversityHarbin150025China
Rechargeable zinc-air batteries have attracted extensive attention as clean,safe,and high-efficient en-ergy storage ***,the oxygen redox reactions at cathode are highly sluggish in kinetics and severely limit the actu... 详细信息
来源: 评论
Ultra-flexible graphene/nylon/PDMS coaxial fiber-shaped multifunctional sensor
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Nano Research 2023年 第4期16卷 5541-5547页
作者: Peddathimula Puneetha Siva Pratap Reddy Mallem Sung Cheol Park Seoha Kim Dong Hun Heo Cheol Min Kim Jaesool Shim Sung Jin An Dong-Yeon Lee Kwi-Il Park Department of Robotics and Intelligent Machine Engineering/College of Mechanical and IT Engineering Yeungnam UniversityGyeongsan 38541Republic of Korea School of Materials Science and Engineering Kyungpook National UniversityDaegu 41566Republic of Korea Advanced Material Research Center Kumoh National Institute of TechnologyGumi 39177Republic of Korea School of Mechanical Engineering Yeungnam UniversityGyeongsan 38541Republic of Korea Department of Materials Science and Engineering Kumoh National Institute of TechnologyGumi 39177Republic of Korea
The development of flexible and wearable devices is mainly required for tactile sensing;as such devices can adapt to complicated nonuniform surfaces,they can be applied to the human ***,it remains necessary to simulta... 详细信息
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Shining light on transition metal tungstate-based nanomaterials for electrochemical applications:Structures,progress,and perspectives
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Nano Research 2022年 第8期15卷 6924-6960页
作者: Kaijia Feng Zhefei Sun Yong Liu Feng Tao Junqing Ma Han Qian Renhong Yu Kunming Pan Guangxin Wang Shizhong Wei Qiaobao Zhang National Joint Engineering Research Center for Abrasion Control and Molding of Metal Materials Henan Key Laboratory of Non–Ferrous Materials Science&Processing TechnologySchool of Materials Science and EngineeringHenan University of Science and TechnologyLuoyang 471023China Provincial and Ministerial Co–construction of Collaborative Innovation Center for Non-ferrous Metal New Materials and Advanced Processing Technology Henan Key Laboratory of High-temperature Structural and Functional MaterialsHenan University of Science and TechnologyLuoyang 471023China Department of Materials Science and Engineering College of MaterialsXiamen UniversityXiamen 361005China Fujian Key Laboratory of Surface and Interface Engineering for High Performance Materials Xiamen UniversityXiamen 361005China
Transition metal tungstate-based nanomaterials have become one of the research hotspots in electrochemistry due to their abundant natural resources,low costs,and environmental *** studies have demonstrated their signi... 详细信息
来源: 评论
Stretchable photosynaptic transistor with an ultralow energy consumption conferred using conjugated block copolymers/perovskite quantum dots nanocomposites
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materials Today 2023年 70卷 57-70页
作者: Chen, Wei-Cheng Lin, Yan-Cheng Hung, Chih-Chien Hsu, Li-Che Wu, Ya-Shuan Liu, Cheng-Liang Kuo, Chi-Ching Chen, Wen-Chang Department of Chemical Engineering and Advanced Research Center for Green Materials Science and Technology National Taiwan University Taipei10617 Taiwan Department of Molecular Science and Engineering Institute of Organic and Polymeric Materials National Taipei University of Technology Taipei10608 Taiwan Department of Chemical Engineering National Cheng Kung University Tainan70101 Taiwan Department of Materials Science and Engineering National Taiwan University Taipei10617 Taiwan
Emulation of photonic synapses offers a promising avenue for developing low-energy consumption of soft electronics, neurologically inspired robotics, and neuromorphic network computation. In this paper, a fully stretc... 详细信息
来源: 评论
Tuning on passive interfacial cooling of covalent organic framework hydrogel for enhancing freshwater and electricity generation
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SusMat 2024年 第5期4卷 139-153页
作者: Jianfei Wu Ziwei Cui Yuxuan Su Dongfang Wu Jundie Hu Jiafu Qu Jianzhang Li Fangyuan Kang Dan Tian Qichun Zhang Yahui Cai Co-Innovation Center of Efficient Processing and Utilization of Forest Resources College of Materials Science and EngineeringNanjing Forestry UniversityNanjingChina School of Materials Science and Engineering Suzhou University of Science and TechnologySuzhouChina State Key Laboratory of Efficient Production of Forest Resources Beijing Forestry UniversityBeijingChina Department of Materials Science and Engineering Department of ChemistryCenter of Super-Diamond and Advanced Films&Hong Kong Institute of Clean EnergyCity University of Hong KongHong KongChina
Developing an efficient freshwater and electricity co-generation device(FECGD)can solve the shortage of freshwater and ***,the poor salt resistance and refrigeration properties of the materials for FECGD put big chall... 详细信息
来源: 评论