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NML文章集锦 | 锂电池

纳微快报 nanomicroletters 2022-08-10


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一、专辑介绍

锂电池是作为一种可充电电池,主要依靠锂离子在正极和负极之间的移动来工作。在充放电过程中,锂离子在两个电极之间往返嵌入和脱嵌。充电时,锂离子从正极脱嵌,经过电解质嵌入负极,负极处于富锂状态。放电时则相反。在商品化的可充电池中,锂电池的比能量最高,比较适用于商业生产。但是,高容量、长循环稳定性、低能量损失、高安全性依然是锂电池需要迫切解决的问题,吸引着众多科研工作者的兴趣。

本虚拟专辑简介:精选22篇近期发表在Nano-Micro Letters《纳微快报(英文)》上的与锂离子电池技术相关的文章,包括5篇综述、14篇研究文章、2篇亮点评论、1篇通讯文章。5篇综述文章分别来自北京理工大学陈人杰课题组、中国科学院北京纳米能量与纳米系统研究所的杨亚团队、山东大学刘宏教授与济南大学周伟家教授团队、澳大利亚格里菲斯大学张山青团队、合肥工业大学朱继平教授课题组。14篇研究文章来自厦门大学材料学院彭栋梁教授团队、上海大学王勇教授和刘天存博士等、四川大学林紫锋与宁波材料技术与工程研究院黄庆研究员、复旦大学卢红斌等人、苏州纳米技术与纳米仿生研究所沈炎宾等人、湘潭大学刘黎与湖南大学刘智骁以及华盛顿大学曹国忠教授团队、上海交通大学戚嵘嵘、宰建陶、钱雪峰教授团队、中南大学梁叔全和潘安强教授团队、南京航空航天大学申来法、张校刚教授团队、中南大学邹国强教授课题组、北京化工大学徐斌与美国德雷塞尔大学Yury Gogotsi教授团队、浙江大学韩伟强教授课题组、印度Amrita Vishwa Vidyapeetham大学Dhamodaran Santhanagopalan课题组、韩国全南国立大学Do‑Heyoung Kim课题组。2篇亮点评论来自香港中文大学王莹教授、澳大利亚格里菲斯大学张山青教授。1篇通讯文章来自浙江大学吴浩斌研究员团队。


文章构思巧妙,每篇文章都是精品,欢迎关注阅读。点击“阅读原文”,可下载本专辑pdf全文。也欢迎您咨询和投稿。


二、精选文章

Review

1. Rational Design of MOF-Based Materials for Next-Generation Rechargeable Batteries (REVIEW)

Zhengqing Ye, Ying Jiang, Li Li, Feng Wu and Renjie Chen

Nano-Micro Lett. 13, 203 (2021).

https://doi.org/10.1007/s40820-021-00726-z

NML综述 | MOF基材料的设计及其在新型可充电电池中的应用


2. 2D Nanomaterials for Effective Energy Scavenging (REVIEW)

Md Al Mahadi Hasan, Yuanhao Wang, Chris R. Bowen, Ya Yang

Nano-Micro Lett. 13, 82 (2021).

https://doi.org/10.1007/s40820-021-00603-9

中科院能源所杨亚综述:用于能量收集的2D纳米材料


3. Laser Synthesis and Microfabrication of Micro/Nanostructured Materials Toward Energy Conversion and Storage (REVIEW)

Lili Zhao, Zhen Liu, Duo Chen, Fan Liu, Zhiyuan Yang, Xiao Li, Haohai Yu, Hong Liu, Weijia Zhou

Nano-Micro Lett. 13, 49 (2021).

https://doi.org/10.1007/s40820-020-00577-0

刘宏教授综述:激光微加工制备用于能量转换和存储的微/纳结构材料



4. DFT-Guided Design and Fabrication of Carbon-Nitride-Based Materials for Energy Storage Devices: A Review (REVIEW)

David Adekoya, Shangshu Qian, Xingxing Gu, William Wen, Dongsheng Li, Jianmin Ma, Shanqing Zhang

Nano-Micro Lett. 13, 13 (2021).

https://doi.org/10.1007/s40820-020-00522-1

澳大利亚张山青综述:氮化碳材料在能量存储器件中的DFT设计及合成


5. Two-Dimensional Black Phosphorus: An Emerging Anode Material for Lithium-Ion Batteries (REVIEW)

JiPing Zhu, GuangShun Xiao, XiuXiu Zuo

Nano-Micro Lett. 12, 120 (2020).

https://doi.org/10.1007/s40820-020-00453-x

二维黑磷:用于锂离子电池的新兴负极材料


Article

1. Boosting the Electrochemical Performance of Li- and Mn-Rich Cathodes by a Three-in-One Strategy (ARTICLE)

Wei He, Fangjun Ye, Jie Lin, Qian Wang, Qingshui Xie, Fei Pei, Chenying Zhang, Pengfei Liu, Xiuwan Li, Laisen Wang, Baihua Qu and Dong-Liang Peng

Nano-Micro Lett. (2021) 13: 205.

https://doi.org/10.1007/s40820-021-00725-0

“三合一”策略:提升富锂锰基正极材料性能

2. Dendrite-Free and Stable Lithium Metal Battery Achieved by a Model of Stepwise Lithium Deposition and Stripping (ARTICLE)

Tiancun Liu, Jinlong Wang, Yi Xu, Yifan Zhang and Yong Wang

Nano-Micro Lett. 13, 170 (2021).

https://doi.org/10.1007/s40820-021-00687-3

“黄瓜状”亲锂复合骨架:渐进锂沉积和剥离实现无枝晶化锂金属电池

3. Electrochemical Lithium Storage Performance of Molten Salt Derived V2SnC MAX Phase (ARTICLE)

Youbing Li, Guoliang Ma, Hui Shao, Peng Xiao, Jun Lu, Jin Xu, Jinrong Hou, Ke Chen, Xiao Zhang, Mian Li, Per O. Å. Persson, Lars Hultman, Per Eklund, Shiyu Du, Zhifang Chai, Zhengren Huang, Na Jin, Jiwei Ma, Ying Liu, Zifeng Lin and Qing Huang

Nano-Micro Lett. 13, 158 (2021).

https://doi.org/10.1007/s40820-021-00684-6


4. A Bifunctional-Modulated Conformal Li/Mn-Rich Layered Cathode for Fast-Charging, High Volumetric Density and Durable Li-Ion Full Cells (ARTICLE)

Zedong Zhao, Minqiang Sun, Tianqi Wu, Jiajia Zhang, Peng Wang, Long Zhang, Chongyang Yang, Chengxin Peng and Hongbin Lu

Nano-Micro Lett. 13, 118 (2021).

https://doi.org/10.1007/s40820-021-00643-1


5. Stable Lithium-Carbon Composite Enabled by Dual-Salt Additives (ARTICLE)

Lei Zheng, Feng Guo, Tuo Kang, Yingzhu Fan, Wei Gu, Yayun Mao, Ya Liu, Rong Huang, Zhiyun Li, Yanbin Shen, Wei Lu and Liwei Chen

Nano-Micro Lett. 13, 111 (2021).

https://doi.org/10.1007/s40820-021-00633-3


6. Wire-in-Wire TiO2/C Nanofibers Free-Standing Anodes for Li-Ion and K-Ion Batteries with Long Cycling Stability and High Capacity (ARTICLE)

Die Su, Yi Pei, Li Liu, Zhixiao Liu, Junfang Liu, Min Yang, Jiaxing Wen, Jing Dai, Huiqiu Deng, Guozhong Cao

Nano-Micro Lett. 13, 107 (2021).

https://doi.org/10.1007/s40820-021-00632-4


7. Chemical Coupled PEDOT:PSS/Si Electrode: Suppressed Electrolyte Consumption Enables Long-Term Stability (ARTICLE)

Xuejiao Liu, Zhixin Xu, Asma Iqbal, Ming Chen, Nazakat Ali, CheeTongJohn Low, Rongrong Qi, Jiantao Zai, Xuefeng Qian

Nano-Micro Lett. 13, 54 (2021).

https://doi.org/10.1007/s40820-020-00564-5


8. Tuning Interface Bridging Between MoSe2 and Three-Dimensional Carbon Framework by Incorporation of MoC Intermediate to Boost Lithium Storage Capability (ARTICLE)

Jing Chen, Yilin Luo, Wenchao Zhang, Yu Qiao, Xinxin Cao, Xuefang Xie, Haoshen Zhou, Anqiang Pan, Shuquan Liang

Nano-Micro Lett. 12, 171 (2020).

https://doi.org/10.1007/s40820-020-00511-4

梁叔全&潘安强教授:原位引入MoC中间相提升储锂性能


9. Niobium Tungsten Oxide in a Green Water-in-Salt Electrolyte Enables Ultra-Stable Aqueous Lithium-Ion Capacitors (ARTICLE)

Shengyang Dong, Yi Wang, Chenglong Chen, Laifa Shen, Xiaogang Zhang

Nano-Micro Lett. 12, 168 (2020).

https://doi.org/10.1007/s40820-020-00508-z


10. Insights into Enhanced Capacitive Behavior of Carbon Cathode for LithiumIon Capacitors: The Coupling of Pore Size and Graphitization Engineering (ARTICLE)

Kangyu Zou, Peng Cai, Baowei Wang, Cheng Liu, Jiayang Li, Tianyun Qiu, Guoqiang Zou, Hongshuai Hou, Xiaobo Ji

Nano-Micro Lett. 12, 121 (2020).

https://doi.org/10.1007/s40820-020-00458-6



11. Enhanced Ionic Accessibility of Flexible MXene Electrodes Produced by Natural Sedimentation (ARTICLE)

Ning Sun, Zhaoruxin Guan, Qizhen Zhu, Babak Anasori, Yury Gogotsi, Bin Xu

Nano-Micro Lett. 12, 89 (2020).

https://doi.org/10.1007/s40820-020-00426-0

Yury+徐斌:柔性大间距MXene膜电极的自然沉降法制备及优异性能


12. Partial Atomic Tin Nanocomplex Pillared Few-Layered Ti3C2Tx MXenes for Superior Lithium-Ion Storage (ARTICLE)

Shunlong Zhang, Hangjun Ying, Bin Yuan, Renzong Hu, Wei-Qiang Han

Nano-Micro Lett. 12, 78 (2020).

https://doi.org/10.1007/s40820-020-0405-7

浙大韩伟强教授:柱撑少层MXenes--解决团聚问题提升锂离子存储性能


13. Surface-Engineered Li4Ti5O12 Nanostructures for High-Power Li-Ion Batteries (ARTICLE)

Binitha Gangaja, Shantikumar Nair, Dhamodaran Santhanagopalan 

Nano-Micro Lett. 12, 30 (2020).

https://doi.org/10.1007/s40820-020-0366-x

 

14. Dendritic Nanostructured Waste Copper Wires for High-Energy Alkaline Battery (ARTICLE)

Nilesh R. Chodankar, Su-Hyeon Ji, Young-Kyu Han, Do-Heyoung Kim

Nano-Micro Lett. 12, 1 (2020).

https://doi.org/10.1007/s40820-019-0337-2

韩国全南国立大学:如何将废铜线做成高性能碱性电池?



Highlight

1.Separator Wettability Enhanced by Electrolyte Additive to Boost the Electrochemical Performance of Lithium Metal Batteries (HIGHLIGHT)

Ying Wang

Nano-Micro Lett. (2021) 13: 210.

https://doi.org/10.1007/s40820-021-00731-2


2. Suppressing Li Dendrites via Electrolyte Engineering by Crown Ethers for Lithium Metal Batteries (HIGHLIGHT)

Shanqing Zhang

Nano-Micro Lett. 12, 158 (2020).

https://doi.org/10.1007/s40820-020-00501-6



Communication

1. Sustained-Release Nanocapsules Enable Long-Lasting Stabilization of Li Anode for Practical Li-Metal Batteries (COMMUNICATION)

QianqianLiu, Yifei Xu, Jianghao Wang, Bo Zhao, Zijian Li, Hao Bin Wu

Nano-Micro Lett. 12, 176 (2020).

https://doi.org/10.1007/s40820-020-00514-1

纳米缓释胶囊(LiNO₃@MOF):提升锂金属电池寿命和稳定性


三、文章下载

链接:https://pan.baidu.com/s/1NuthbJFFHKWIUsgdRKw29Q

提取码:uqzy


往期推荐


NML文章集锦 | 光催化

NML文章集锦 | 水分解

NML文章集锦 | 3D打印

NML文章集锦 | 钙钛矿太阳能电池

NML文章集锦 | 柔性电子


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Nano-Micro Letters《纳微快报(英文)》是上海交通大学主办、Springer Nature合作开放获取(open-access)出版的英文学术期刊,主要报道纳米/微米尺度相关的高水平文章(research article, review, communication, commentary, perspective, letter, highlight, news, etc),包括微纳米材料的合成表征与性能及其在能源、催化、环境、传感、吸波、生物医学等领域的应用研究。已被SCI、EI、SCOPUS、PMC、DOAJ、CNKI、CSCD、知网、万方、维普等数据库收录。2020 JCR影响因子:16.419。在物理、材料、纳米三个领域均居Q1区(前10%)。2020 CiteScore:15.9,材料学科领域排名第4 (4/123)。中科院期刊分区:材料科学1区TOP期刊。全文免费下载阅读(http://springer.com/40820),欢迎关注和投稿。

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