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检索条件"机构=Xi’an Key Laboratory of New Energy Materials and Devices"
6335 条 记 录,以下是31-40 订阅
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Heteroatom anchors Fe-Mn dual-atom catalysts with bi-functional oxygen catalytic activity for low-temperature rechargeable flexible Zn-air batteries
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Journal of energy Chemistry 2024年 第3期90卷 610-620,I0014页
作者: Yuting He Hongtao Li Yi Wang Yufei Jia Yongning Liu Qiang Tan State key laboratory for Mechanical Behaviour of materials School of Materials Science&EngineeringXi’an Jiaotong UniversityXi’an 710049ShaanxiChina
M-N-C(M=Fe,Co,Ni,etc.) catalyst owns high catalytic activity in the oxygen catalytic reaction which is the most likely to replace the Pt-based *** it is still a challenge to further increase the active site *** articl... 详细信息
来源: 维普期刊数据库 维普期刊数据库 同方期刊数据库 同方期刊数据库 评论
Rational design multi-color-emissive chemiluminescent carbon nanodots in a single solvothermal reaction
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Nano Research 2024年 第6期17卷 4651-4660页
作者: Guang-Song Zheng Cheng-Long Shen Yuan Deng Kai-Kai Liu Jin-Hao Zang Lin Dong Qing Lou Chong-xin Shan Henan key laboratory of Diamond Optoelectronic materials and devices Key Laboratory of Materials PhysicsMinistry of Educationand School of Physics and MicroelectronicsZhengzhou UniversityZhengzhou 450052China
Recently,the chemiluminescence(CL)induced by carbon nanodots(CDs)has intrigued researchers’extensive interests in various applications due to its special light emission ***,the difficulty of synthesizing chemilumines... 详细信息
来源: 维普期刊数据库 维普期刊数据库 评论
A new nonfullerene acceptor with an extended π conjugation core enables ternary organic solar cells approaching 19%efficiency
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Nano Research 2024年 第5期17卷 4062-4068页
作者: Chunyan Liu Nailiang Qiu Zhengjin Li Yan Lu School of materials Science and Engineering Tianjin Key Laboratory for Photoelectric Materials and DevicesKey Laboratory of Display Materials and Photoelectric DevicesMinistry of EducationTianjin University of TechnologyTianjin 300384China School of Chemistry Chemical Engineering and MaterialsJining UniversityQufu 273155China
In organic solar cells(OSCs),it is an effective way to improve the power conversion efficiency(PCE)by adding a guest component with appropriate absorption and energy levels in the host ***,a new nonfullerene acceptor(... 详细信息
来源: 维普期刊数据库 维普期刊数据库 评论
Dielectric nanocomposites with superb high-temperature capacitive performance based on high intrinsic dielectric constant polymer
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Nano Research 2024年 第9期17卷 8504-8512页
作者: Ding Ai Yuan Chang Haoliang Liu Chenglong Wu Yao Zhou Yuting Han Hao Yu Bing xiao Yonghong Cheng Guanglei Wu Zirui Jia State key laboratory of Electrical Insulation and Power Equipment School of Electrical EngineeringXi’an Jiaotong UniversityXi’an 710049China Institute of materials for energy and Environment State Key Laboratory of Bio-Fibers and Eco-TextilesCollege of Materials Science and EngineeringQingdao UniversityQingdao 266071China
Advancements in power electronics necessitate dielectric polymer films capable of operating at high temperatures and possessing high energy *** significant strides have been achieved by integrating inorganic fillers i... 详细信息
来源: 维普期刊数据库 维普期刊数据库 评论
Simultaneous integration of Fe clusters and NiFe dual single atoms in nitrogen-doped carbon for oxygen reduction reaction
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Nano Research 2024年 第4期17卷 2291-2297页
作者: Jirong Bai Yuebin Lian Yaoyao Deng Mei xiang Peng Xu Quanfa Zhou Yawen Tang Yaqiong Su Research Center of Secondary Resources and Environment School of Chemical Engineering and MaterialsChangzhou Institute of TechnologyChangzhou 213022China Jiangsu key laboratory of new Power Batteries School of Chemistry and Materials ScienceNanjing Normal UniversityNanjing 210023China School of Chemistry Engineering Research Center of Energy Storage Materials and Devices of Ministry of EducationNational Innovation Platform(Center)for Industry-Education Integration of Energy Storage TechnologyXi’an Jiaotong UniversityXi’an 710049China
Atomically-dispersed iron-based electrocatalysts are promising substitutes for noble metal electrocatalysts because of excellent performance in oxygen reduction reaction(ORR).Rationally modulating the local coordinati... 详细信息
来源: 维普期刊数据库 维普期刊数据库 评论
Integration of urchin-like MnCo_(2)O_(4)@C core–shell nanowire arrays within porous copper current collector for superior performance Li-ion battery anodes
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Rare Metals 2024年 第2期43卷 599-611页
作者: Xue-Ru Zhang Qiong Wu Yong Zhang xi-Fei Li Ting xie Yu-Cheng Wu Instrumental Analysis Center Hefei University of TechnologyHefei230009China key laboratory of Advanced Functional materials and devices of Anhui Province Hefei230009China School of materials Science and Engineering Hefei University of TechnologyHefei230009China Institute of Advanced Electrochemical energy Xi’an University of TechnologyXi’an710048China
Spinel MnCo_(2)O_(4) is a promising energy storage candidate as anode materials in lithium-ion batteries owing to synergistic effects of two intrinsic solid-state redox ***,low conductivity,poor rate capacity and rapi... 详细信息
来源: 维普期刊数据库 维普期刊数据库 同方期刊数据库 同方期刊数据库 评论
Transient Response and Ionic Dynamics in Organic Electrochemical Transistors
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Nano-Micro Letters 2024年 第11期16卷 191-223页
作者: Chao Zhao Jintao Yang Wei Ma State key laboratory for Mechanical Behavior of materials Xi’an Jiaotong UniversityXi′an 710049People’s Republic of China
The rapid development of organic electrochemical transistors(OECTs)has ushered in a new era in organic electronics,distinguishing itself through its application in a variety of domains,from high-speed logic circuits t... 详细信息
来源: 维普期刊数据库 维普期刊数据库 同方期刊数据库 同方期刊数据库 评论
High temperature polyimide nanocomposites containing twodimensional nanofillers for improved thermal stability and capacitive energy storage performance
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Nano Research 2024年 第8期17卷 7746-7755页
作者: Ding Ai Yuting Han Zongliang xie xi Pang Yuan Chang He Li Chenglong Wu Yonghong Cheng Guanglei Wu State key laboratory of Electrical Insulation and Power Equipment School of Electrical EngineeringXi’an Jiaotong UniversityXi’an 710049China Institute of materials for energy and Environment State Key Laboratory of Bio-Fibers and Eco-TextilesCollege of Materials Science and EngineeringQingdao UniversityQingdao 266071China
Future electronic devices toward high integration and miniaturization demand reliable operation of dielectric materials at high electric fields and elevated ***,the electrical deterioration caused by Joule heat genera... 详细信息
来源: 维普期刊数据库 维普期刊数据库 评论
"Win-Win" Scenario of High energy Density and Long Cycling Life in a Novel Na3.9MnCr0.9Zr0.1(PO4)3 Cathode
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energy & Environmental materials 2024年 第1期7卷 87-94页
作者: Yao Wang Yukun Liu Pingge He Junteng Jin Xudong Zhao Qiuyu Shen Jie Li Xuanhui Qu Yongchang Liu Lifang Jiao Beijing Advanced Innovation Center for materials Genome Engineering State Key Laboratory for Advanced Metals and Materials Institute for Advanced Materials and Technology University of Science and Technology Beijing Department of Chemistry and Biochemistry University of California Tianjin key laboratory for Photoelectric materials and devices School of Materials Science and Engineering Tianjin University of Technology key laboratory of Advanced energy materials Chemistry (Ministry of Education) Nankai University
The development of high-energy and long-lifespan NASICON-type cathode materials for sodium-ion batteries has always been a research hotspot but a daunting *** Na4MnCr(PO4)3has emerged as one of the most promising hi... 详细信息
来源: 维普期刊数据库 维普期刊数据库 同方期刊数据库 同方期刊数据库 评论
In situ protonation in a locally flexible porous coordination polymer for enhancing proton-carrier loading and proton conductivity
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Science China Chemistry 2024年 第10期67卷 3432-3437页
作者: xianzhe Wei Jincheng Liu Yan Su Weitao Wang Guixiang Wang Gen Zhang Ping Wang Cheng Gu State key laboratory of Luminescent materials and devices Institute of Polymer Optoelectronic Materials and DevicesSouth China University of Technology College of Polymer Science and Engineering State Key Laboratory of Polymer Materials EngineeringSichuan University key laboratory for Soft Chemistry and Functional materials of Ministry of Education School of Chemistry and Chemical EngineeringNanjing University of Science and Technology
Designing efficient proton-conductive materials is crucial in fuel cells. Yet, it remains a substantial challenge because of the issues in proton mobility, proton-carrier amount, and orientation of proton host materia... 详细信息
来源: 同方期刊数据库 同方期刊数据库 同方期刊数据库 同方期刊数据库 评论