4.8 Article

Oxygen Vacancies Boost δ-Bi2O3 as a High-Performance Electrode for Rechargeable Aqueous Batteries

期刊

ACS APPLIED MATERIALS & INTERFACES
卷 11, 期 2, 页码 2103-2111

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsami.8b19575

关键词

oxygen vacancies; Bi2O3; aqueous battery; electrostatic force

资金

  1. National Natural Science Foundation of China [51872115]
  2. Program for the Development of Science and Technology of Jilin Province [20190201309JC]
  3. Jilin Province/Jilin University co Construction Project-Funds for New Materials [SXGJSF2017-3, Branch-2/440050316A36]
  4. Strategic Priority Research Programof Chinese Academy of Sciences [XDA09040203]
  5. Program for JLU Science and Technology Innovative Research Team (JLUSTIRT) [2017TD-09]
  6. Double-First Class Discipline for Materials Science Engineering

向作者/读者索取更多资源

Metal oxides as electrode materials are of great potential for rechargeable aqueous batteries. However, they suffer from inferior cycle stability and rate capability because of poor electronic and ionic conductivities. Herein, taking vertically orientated Bi2O3 nanoflakes on Ti substrates as examples, we find that the delta-Bi2O3 electrode with plenty of positively charged oxygen defects show remarkably higher specific capacity (264 mA h g(-1)) and far superior rate capability than that of alpha-Bi2O3 with less oxygen vacancies. Through pinpointing the existence form and the role of oxygen vacancies within the electrochemical processes, we demonstrate that oxygen vacancies in delta-Bi2O3 can not only promote electrical conductivity but also serve as central entrepots collecting OH- groups via electrostatic force effect, which has boosted the oxidation reaction and enhanced the electrochemical properties. Our work merits an excellent Bi2O3 negative electrode material via giving full play to the role of oxygen vacancies in electrochemical energy storage.

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