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EER 2022年第4期已上线,敬请关注!

已有 1046 次阅读 2023-1-10 17:42 |个人分类:EER论文集锦|系统分类:科普集锦

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EER 2022年第4期已上线

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EER 2022年第4期文章列表

1.Recent Advances in Non-Precious Metal–Nitrogen–Carbon Single-Site Catalysts for CO2 Electroreduction Reaction to CO

2.Innovative Strategies for Overall Water Splitting Using Nanostructured Transition Metal Electrocatalysts

3Surface Doping vs. Bulk Doping of Cathode Materials for Lithium-Ion Batteries: A Review

4Recent Progress and Design Principles for Rechargeable Lithium Organic Batteries

5.Controlled Synthesis of Carbon-Supported Pt-Based Electrocatalysts for Proton Exchange Membrane Fuel Cells

6.A Review of Nonaqueous Electrolytes, Binders, and Separators for Lithium-Ion Batteries

7Single-Crystal Nickel-Based Cathodes: Fundamentals and Recent Advances

8Recent Advances in the Unconventional Design of Electrochemical Energy Storage and Conversion Devices

9.Versatile Electrospinning for Structural Designs and Ionic Conductor Orientation in All-Solid-State Lithium Batteries


封面故事

南京大学胡征/吴强团队

非贵金属–氮–碳单位点催化剂电催化CO2还原至CO的研究进展

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本期封面故事来自南京大学胡征教授、吴强教授团队,题为“非贵金属–氮–碳单位点催化剂电催化CO2还原至CO的研究进展”。

本论文首先从理论角度介绍了CO2电还原反应(简称CO2RR)制CO的反应机理和金属–氮–碳单位点催化剂(简称M–N–C SSCs)电子结构的调控机制;接着,从实验角度介绍了M–N–C SSCs的构建和电子结构的调控方法;然后,从理论和实验两方面对具有不同金属中心(Ni、Fe、Co等)的M–N–C SSCs的最新电催化性能进行了系统的比较和总结,并探讨了其构效关系;最后,讨论了该领域面临的机遇、挑战和对未来的展望,以便深化和拓展该领域的研究与应用。

以下是该文章的主要内容介绍,如您感兴趣可长按/扫描二维阅读全文,欢迎关注和下载。

文章题目Recent Advances in Non‑Precious Metal–Nitrogen–Carbon Single‑Site Catalysts for CO2 Electroreduction Reaction to CO

作者Yiqun Chen, Junru Zhang, Lijun Yang, Xizhang Wang, Qiang Wu*Zheng Hu*

通讯单位Nanjing University

关键词:CO2 electroreduction reaction; Metal–nitrogen–carbon; Single-site catalysts; Electronic structure; CO

引用信息:Yiqun Chen, Junru Zhang, Lijun Yang, Xizhang Wang, Qiang Wu, Zheng Hu. Recent Advances in Non-Precious Metal–Nitrogen–Carbon Single Site Catalysts for CO2 Electroreduction Reaction to CO. Electrochem. Energy Rev., 2022, 5(4): 11. https://doi.org/10.1007/s41918-022-00156-4   

全文链接:https://link.springer.com/content/pdf/10.1007/s41918-022-00156-4.pdf   

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2022年第4期其他文章


文章2

文章题目Innovative Strategies for Overall Water Splitting Using Nanostructured Transition Metal Electrocatalysts

作者:Asad Ali, Fei Long*1Pei Kang Shen*2

通讯单位:1Guilin University of Technology; 2Guangxi University

关键词:Hydrogen evolution reaction (HER); Oxygen evolution reaction (OER); Overall water splitting (OWS); Transition metal electrocatalyst; Innovative strategies; Basic electrochemistry

引用信息:Asad Ali, Fei Long, Pei Kang Shen. Innovative Strategies for Overall Water Splitting Using Nanostructured Transition Metal Electrocatalysts. Electrochem. Energy Rev., 2022, 5(4): 1. https://doi.org/10.1007/s41918-022-00136-8   

全文链接:https://link.springer.com/content/pdf/10.1007/s41918-022-00136-8.pdf   

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文章3

文章题目Surface Doping vs. Bulk Doping of Cathode Materials for Lithium‑Ion Batteries: A Review

作者:Huaming Qian, Haoqi Ren, Ying Zhang, Xianfeng He, Wenbin Li, Jingjing Wang, Junhua Hu, Hong Yang, Hirbod Maleki Kheimeh Sari, Yu Chen, Xifei Li*1,2

通讯单位:1Xi’an University of Technology; 2Shaanxi International Joint Research Center of Surface Technology for Energy Storage Materials

关键词:Lithium-ion batteries; Cathode materials; Surface doping; Bulk doping; Hybrid surface engineering; Structural stability; Lithium-ion difusion

引用信息: Huaming Qian, Haoqi Ren, Ying Zhang, Xianfeng He, Wenbin Li, Jingjing Wang, Junhua Hu, Hong Yang, Hirbod Maleki Kheimeh Sari, Yu Chen, Xifei Li. Surface Doping vs. Bulk Doping of Cathode Materials for Lithium-Ion Batteries: A Review. Electrochem. Energy Rev., 2022, 5(4): 2. https://doi.org/10.1007/s41918-022-00155-5   

全文链接:https://link.springer.com/content/pdf/10.1007/s41918-022-00155-5.pdf   

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文章4

文章题目Recent Progress and Design Principles for Rechargeable Lithium Organic Batteries

作者:Xiudong Chen, Xiaojie Yin, Junaid Aslam, Weiwei Sun, Yong Wang*

通讯单位:Shanghai University

关键词:Lithium organic batteries; Li-storage mechanism; Organic electrode; Organic functional group; Redox mechanism

引用信息:Xiudong Chen, Xiaojie Yin, Junaid Aslam, Weiwei Sun, Yong Wang. Recent Progress and Design Principles for Rechargeable Lithium Organic Batteries. Electrochem. Energy Rev., 2022, 5(4): 12. https://doi.org/10.1007/s41918-022-00135-9   

全文链接:https://link.springer.com/content/pdf/10.1007/s41918-022-00135-9.pdf   

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文章5

文章题目Controlled Synthesis of Carbon-Supported Pt-Based Electrocatalysts for Proton Exchange Membrane Fuel Cells

作者:Huiyuan Liu, Jian Zhao, Xianguo Li*

通讯单位:University of Waterloo

关键词:Carbon-supported Pt-based electrocatalysts; Synthesis; Shape; Functionalization of commercial carbon support; Postsynthesis treatment

引用信息:Huiyuan Liu, Jian Zhao, Xianguo Li. Controlled Synthesis of Carbon-Supported Pt-Based Electrocatalysts for Proton Exchange Membrane Fuel Cells. Electrochem. Energy Rev., 2022, 5(4): 13. https://doi.org/10.1007/s41918-022-00173-3   

全文链接:https://link.springer.com/content/pdf/10.1007/s41918-022-00173-3.pdf   

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文章6

文章题目A Review of Nonaqueous Electrolytes, Binders, and Separators for Lithium‑Ion Batteries

作者:Jiale Xing, Stoyan Bliznakov, Leonard Bonville, Miodrag Oljaca, Radenka Maric*

通讯单位:University of Connecticut

关键词:Lithium-ion battery; Electrolytes; Binders; Separators

引用信息:Jiale Xing, Stoyan Bliznakov, Leonard Bonville, Miodrag Oljaca, Radenka Maric. A Review of Nonaqueous Electrolytes, Binders, and Separators for Lithium-Ion Batteries. Electrochem. Energy Rev., 2022, 5(4): 14. https://doi.org/10.1007/s41918-022-00131-z   

全文链接:https://link.springer.com/content/pdf/10.1007/s41918-022-00131-z.pdf   

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文章7

文章题目Single-Crystal Nickel-Based Cathodes: Fundamentals and Recent Advances

作者:Shijie Lu, Linbo Tang, Hanxin Wei, Yingde Huang, Cheng Yan, Zhenjiang He, Yunjiao Li, Jing Mao, Kehua Dai, Junchao Zheng*

通讯单位:Central South University

关键词:Lithium-ion battery; Cathode materials; Single crystal; Nickel-based layered oxides

引用信息:Shijie Lu, Linbo Tang, Hanxin Wei, Yingde Huang, Cheng Yan, Zhenjiang He, Yunjiao Li, Jing Mao, Kehua Dai, Junchao Zheng. Single-Crystal Nickel-Based Cathodes: Fundamentals and Recent Advances. Electrochem. Energy Rev., 2022, 5(4): 15. https://doi.org/10.1007/s41918-022-00166-2   

全文链接:https://link.springer.com/content/pdf/10.1007/s41918-022-00166-2.pdf 

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文章8

文章题目Recent Advances in the Unconventional Design of Electrochemical Energy Storage and Conversion Devices

作者:Senthil Velan Venkatesan, Arpita Nandy, Kunal Karan, Stephen R. Larter, Venkataraman Thangadurai*

通讯单位:University of Calgary

关键词:Unconventional energy storage; Redox fow battery; Organic electrolytes; Membrane-free fow cell; All-solid-state batteries

引用信息:Senthil Velan Venkatesan, Arpita Nandy, Kunal Karan, Stephen R. Larter, Venkataraman Thangadurai. Recent Advances in the Unconventional Design of Electrochemical Energy Storage and Conversion Devices. Electrochem. Energy Rev., 2022, 5(4): 16. https://doi.org/10.1007/s41918-022-00162-6   

全文链接:https://link.springer.com/content/pdf/10.1007/s41918-022-00162-6.pdf 

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文章9

文章题目Versatile Electrospinning for Structural Designs and Ionic Conductor Orientation in All-Solid-State Lithium Batteries

作者:Qiang Li, Xiao Sun, Daxian Cao, Ying Wang, Pengcheng Luan, Hongli Zhu*

通讯单位:Northeastern University

关键词:Electrospinning; Nanofbers; All-solid-state lithium battery; Solid-state electrolytes; Flexible device

引用信息:Qiang Li, Xiao Sun, Daxian Cao, Ying Wang, Pengcheng Luan, Hongli Zhu. Versatile Electrospinning for Structural Designs and Ionic Conductor Orientation in All-Solid-State Lithium Batteries. Electrochem. Energy Rev., 2022, 5(4): 18. https://doi.org/10.1007/s41918-022-00170-6   

全文链接:https://link.springer.com/content/pdf/10.1007/s41918-022-00170-6.pdf   

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关于我们

Electrochemical Energy Reviews (《电化学能源评论(英文)》,简称EER),该期刊旨在及时反映国际电化学能源转换与存储领域最新进展。EER是全球首本专注电化学能源的英文综述性期刊。EER覆盖化学能源转换与存储所有学科,包括燃料电池、锂电池、金属离子电池、金属-空气电池、超级电容器、制氢-储氢、CO2转换等。EER为季刊,每年3月、6月、9月以及12月出版。创刊号在2018年3月正式出版。

2018年6月,经过激烈角逐(87选20),EER成功入选由中国科协、财政部、教育部、国家新闻出版署、中国科学院、中国工程院等六部门联合实施的中国科技期刊国际影响力提升计划D类项目,进入新刊国家队阵列。

EER于2020年8月被SCIE正式收录;2021年6月,被EI和Scopus同时正式收录;2022年5月,被CSCD收录;2022年6月,入选《科技期刊世界影响力指数(WJCI)报告》2021版;2022年6月发布的JCR影响因子为32.804, 在全球电化学领域排名蝉联第一;2022年6月发布的爱思唯尔CiteScore 为41.9,3个学科(材料科学、电化学、化学工程)排名均为第一。目前文章篇均下载量超过5,400次。


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