49-NML专辑 | 锌离子电池
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一、专辑介绍
锌离子电池:由于传统储能技术带来的环境污染和能源危机,人们对高能量密度、低成本的环保型电网储能设备需求不断增加,这促进了各种储能系统的快速发展。锂离子电池因其高效能、高电压、长循环寿命等优点被广泛应用于商业储能装置。但由于成本高、安全问题多,严重阻碍了锂离子电池的大规模应用。作为新兴的、极具发展前景的可替代储能技术,锌离子可充电电池因其丰富的自然资源、内在的安全性和成本效益而倍受关注。尤其是在锌离子电池(ZIBs)中使用水电解质,使便携式电子应用和大规模储能系统展示出巨大潜力。
本虚拟专辑介绍12篇近期发表在Nano-Micro Letters《纳微快报》上的锂硫电池相关的文章,包括12篇研究文章。12篇研究文章Article分别来自清华大学深圳研究院徐成俊与暨南大学董留兵团队,哈尔滨工业大学(深圳)黄燕课题组,中国科学技术大学余彦与广州工业大学黄少铭团队,新加坡科技设计大学Yang Hui Ying与深圳大学时玉萌团队,北京化工大学于中振课题组,吉林大学乔振安课题组,华中科技大学罗为课题组,悉尼科技大学Guo xiu Wang与清华大学徐成俊团队,安徽大学曾玮与湖北汽车工业学院马亚楠团队,中南大学梁叔全、周江团队。
欢迎各位关注引用,扫描TOC图左下角二维码可免费阅读全文。
二、精选文章
Article
1. High-Performance Aqueous Zinc-Ion Batteries Realized by MOF Materials(ARTICLE)
Xuechao Pu, Baozheng Jiang, Xianli Wang, Wenbao Liu, Liubing Dong, Feiyu Kang, Chengjun Xu
Nano-Micro Lett. 12, 152 (2020).
https://doi.org/10.1007/s40820-020-00487-1
2. High-Voltage Flexible Aqueous Zn-Ion Battery with Extremely Low Dropout Voltage and Super-Flat Platform(ARTICLE)
Zhe Chen, Panpan Wang, Zhenyuan Ji, Hua Wang, Jie Liu, Jiaqi Wang, Mengmeng Hu, Yan Huang
Nano-Micro Lett. 12, 75 (2020).
https://doi.org/10.1007/s40820-020-0414-6
3. A High-Capacity Ammonium Vanadate Cathode for Zinc-Ion Battery(ARTICLE)
Qifei Li, Xianhong Rui, Dong Chen, Yuezhan Feng, Ni Xiao, Liyong Gan, Qi Zhang, Yan Yu, Shaoming Huang
Nano-Micro Lett. 12, 67 (2020).
https://doi.org/10.1007/s40820-020-0401-y
4. Rechargeable Aqueous Zinc-Ion Batteries in MgSO4/ZnSO4 Hybrid Electrolytes(ARTICLE)
Yingmeng Zhang, Henan Li, Shaozhuan Huang, Shuang Fan, Lingna Sun, Bingbing Tian, Fuming Chen, Ye Wang, Yumeng Shi, Hui Ying Yang
Nano-Micro Lett. 12, 60 (2020).
https://doi.org/10.1007/s40820-020-0385-7
新加坡科技设计大学&深圳大学:首次在电解液中添加Mg2+提高水系ZIB电池的稳定性
5. Layered Birnessite Cathode with a Displacement/Intercalation Mechanism for High-Performance Aqueous Zinc-Ion Batteries(ARTICLE)
Xian-Zhi Zhai, Jin Qu, Shu-Meng Hao, Ya-Qiong Jing, Wei Chang, Juan Wang, Wei Li, Yasmine Abdelkrim, Hongfu Yuan, Zhong-Zhen Yu
Nano-Micro Lett. 12, 56 (2020).
https://doi.org/10.1007/s40820-020-0397-3
6. Boosting High-Rate Zinc-Storage Performance by the Rational Design of Mn2O3 Nanoporous Architecture Cathode(ARTICLE)
Danyang Feng, Tu-Nan Gao, Ling Zhang, Bingkun Guo, Shuyan Song, Zhen-An Qiao, Sheng Dai
Nano-Micro Lett. 12, 14 (2020).
https://doi.org/10.1007/s40820-019-0351-4
高倍率水系锌离子电池正极材料:孔径可调的高结晶介孔Mn2O3材料
7. Bi2S3 for Aqueous Zn Ion Battery with Enhanced Cycle Stability(ARTICLE)
Ting Xiong, Yinming Wang, Bosi Yin, Wen Shi, Wee Siang Vincent Lee, Junmin Xue
Nano-Micro Lett. 12, 8 (2020).
https://doi.org/10.1007/s40820-019-0352-3
8. High-Power and Ultralong-Life Aqueous Zinc-Ion Hybrid Capacitors Based on Pseudocapacitive Charge Storage(ARTICLE)
Liubing Dong, Wang Yang, Wu Yang, Chengyin Wang, Yang Li, Chengjun Xu, Shuwei Wan, Fengrong He, Feiyu Kang, Guoxiu Wang
Nano-Micro Lett. 11, 94 (2019).
https://doi.org/10.1007/s40820-019-0328-3
9. A New Free-Standing Aqueous Zinc-Ion Capacitor Based on MnO2–CNTs Cathode and MXene Anode(ARTICLE)
Siliang Wang, Qiang Wang, Wei Zeng, Min Wang, Limin Ruan, Yanan Ma
Nano-Micro Lett. 11, 70 (2019).
http://dx.doi.org/10.1007/s40820-019-0301-1
10. Ultra-High Mass-Loading Cathode for Aqueous Zinc-Ion Battery Based on Graphene-Wrapped Aluminum Vanadate Nanobelts(ARTICLE)
Wenyu Zhang, Shuquan Liang, Guozhao Fang, Yongqiang Yang, Jiang Zhou
Nano-Micro Lett. 11, 69 (2019).
http://dx.doi.org/10.1007/s40820-019-0300-2
超大层间距提升负载!首次报道一种新型钒基水系ZIBs正极材料
11. Novel Insights into Energy Storage Mechanism of Aqueous Rechargeable Zn/MnO2 Batteries with Participation of Mn2+(ARTICLE)
Yongfeng Huang, Jian Mou, Wenbao Liu, Xianli Wang, Liubing Dong, Feiyu Kang, Chengjun Xu
Nano-Micro Lett. 11, 49 (2019).
http://dx.doi.org/10.1007/s40820-019-0278-9
12. V2O5 Nanospheres with Mixed Vanadium Valences as High Electrochemically Active Aqueous Zinc-Ion Battery Cathode(ARTICLE)
Fei Liu, Zixian Chen, Guozhao Fang, Ziqing Wang, Yangsheng Cai, Boya Tang, Jiang Zhou, Shuquan Liang
Nano-Micro Lett. 11, 25 (2019).
https://doi.org/10.1007/s40820-019-0256-2
NML研究文章|水系锌离子电池正极材料:混合价态V2O5纳米球
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三、文章下载
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https://pan.baidu.com/s/1NuthbJFFHKWIUsgdRKw29Q
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