Перейти к основному содержанию
AkademIndex

Продукты

Для разработчиков

AkademBaseОткрытый API экосистемы
Статья

Manipulating Crystallographic Orientation of Zinc Deposition for Dendrite‐free Zinc Ion Batteries

Jin CaoCenter of Excellence in Responsive Wearable Materials Metallurgy and Materials Science Research Institute Chulalongkorn University Bangkok 10330 ThailandDongdong ZhangCenter of Excellence in Responsive Wearable Materials Metallurgy and Materials Science Research Institute Chulalongkorn University Bangkok 10330 ThailandChao GuDepartment of Physics Southern University of Science and Technology Shenzhen 518055 P. R. ChinaXiao WangState Key Laboratory of Catalysis Dalian Institute of Chemical Physics Chinese Academy of Sciences Dalian Liaoning 116023 ChinaShanmin WangDepartment of Physics Southern University of Science and Technology Shenzhen 518055 P. R. ChinaXinyu ZhangState Key Laboratory of Metastable Materials Science and Technology Yanshan University Qinhuangdao 066004 P. R. ChinaJiaqian QinCenter of Excellence in Responsive Wearable Materials Metallurgy and Materials Science Research Institute Chulalongkorn University Bangkok 10330 ThailandZhong‐Shuai WuDalian National Laboratory for Clean Energy Chinese Academy of Sciences 457 Zhongshan Road Dalian 116023 China
2021en
ABI

Аннотация

Abstract The dendrite issues associated with zinc anode lead to safety hazards and sluggish reaction kinetics, and largely restrain widespread application of aqueous zinc ion batteries (ZIBs). Herein, a functional separator composed of cellulose nanofibers and graphene oxide (CG) is developed for dendrite‐free and exceptionally stable ZIBs, realized by uniform hexagonal zinc deposits with manipulated crystallographic orientation (002) plane. This CG separator with negative surface charges and abundant zincophilic‐O groups ensures the strong interaction between the separator and zinc species, simultaneously inducing Zn(002) deposition due to the low mismatch between (002) Zn and (002) GO , thus initiating the preferential orientation of the zinc growth along the horizontal direction due to strong Zn binding ability, and uniform interfacial charge of Zn(002) deposition. Furthermore, the CG separator can effectively promote the uniform nucleation of Zn 2+ and eliminate side effects. Accordingly, extremely low polarization of 58 mV at 0.5 mA cm −2 , and ultralong cycle life over 1750 h at 2 mA cm −2 and 400 h at 20 mA cm −2 are achieved for the zinc anode. Notably, the CG separator significantly boosts rate capability and cyclability of coin‐type full batteries (Zn || Zn(CF 3 SO 3 ) 2 || V 2 O 5 , Zn || ZnSO 4 + MnSO 4 ||MnO 2 /graphite) and a flexible soft‐packaged battery (Zn || MnO 2 ). Therefore, this work introduces a sustainability consideration in to the design of separators for constructing dendrite‐free ZIBs.

Перевод пока недоступен

Идентификаторы

Цитирования и источники

Цитирований: 2Использованных источников: 0