Li2O2 oxidation: the charging reaction in the aprotic Li-O2 batteries

被引:18
|
作者
Cui, Qinghua [1 ,2 ]
Zhang, Yelong [1 ,2 ]
Ma, Shunchao [1 ,2 ]
Peng, Zhangquan [1 ]
机构
[1] Chinese Acad Sci, Changchun Inst Appl Chem, State Key Lab Elect Chem, Changchun 130022, Peoples R China
[2] Univ Chinese Acad Sci, Beijing 100039, Peoples R China
关键词
Aprotic Li-O-2 battery; Li2O2; oxidation; Morphology; Kinetics; Initial location upon oxidation; Charge transport; KINETIC OVERPOTENTIALS; OXYGEN REDUCTION; TRANSPORT; ELECTRON; ELECTROCHEMISTRY; EVOLUTION;
D O I
10.1007/s11434-015-0837-5
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Aprotic Li-O-2 battery has attracted a great deal of interest because of its high theoretical energy density that is far beyond what the best Li-ion technologies can achieve. However, the present Li-O-2 batteries suffer from the low energy efficiency that is limited mainly by the high overpotentials required to re-oxidize Li2O2, the discharge product. Over the past few years, considerable research efforts have been devoted to the understanding of the Li2O2 oxidation reactions. Here, we summarize the results obtained from the fundamental study of the Li2O2 oxidation, including its morphology, reaction route, kinetics, the initial location upon oxidation and the charge transport within Li2O2. A better mechanistic understanding of the Li2O2 oxidation reaction will provide a solid foundation for the realization of practical Li-O-2 cells with a higher energy efficiency.
引用
收藏
页码:1227 / 1234
页数:8
相关论文
共 50 条
  • [1] Li2O2 oxidation: the charging reaction in the aprotic Li-O2 batteries
    Qinghua Cui
    Yelong Zhang
    Shunchao Ma
    Zhangquan Peng
    ScienceBulletin, 2015, 60 (14) : 1227 - 1234
  • [2] A highly efficient Li2O2 oxidation system in Li-O2 batteries
    Hase, Yoko
    Seki, Juntaro
    Shiga, Tohru
    Mizuno, Fuminori
    Nishikoori, Hidetaka
    Iba, Hideki
    Takechi, Kensuke
    CHEMICAL COMMUNICATIONS, 2016, 52 (82) : 12151 - 12154
  • [3] Recent advances in understanding of the mechanism and control of Li2O2 formation in aprotic Li-O2 batteries
    Lyu, Zhiyang
    Zhou, Yin
    Dai, Wenrui
    Cui, Xinhang
    Lai, Min
    Wang, Li
    Huo, Fengwei
    Huang, Wei
    Hu, Zheng
    Chen, Wei
    CHEMICAL SOCIETY REVIEWS, 2017, 46 (19) : 6046 - 6072
  • [4] A Facile Mechanism for Recharging Li2O2 in Li-O2 Batteries
    Kang, ShinYoung
    Mo, Yifei
    Ong, Shyue Ping
    Ceder, Gerbrand
    CHEMISTRY OF MATERIALS, 2013, 25 (16) : 3328 - 3336
  • [5] Li2O2 Formation Electrochemistry and Its Influence on Oxygen Reduction/Evolution Reaction Kinetics in Aprotic Li-O2 Batteries
    Liu, Lili
    Liu, Yihao
    Wang, Chen
    Peng, Xiaohui
    Fang, Weiwei
    Hou, Yuyang
    Wang, Jun
    Ye, Jilei
    Wu, Yuping
    SMALL METHODS, 2022, 6 (01)
  • [6] The Decisive Role of Li2O2 Desorption for Oxygen Reduction Reaction in Li-O2 Batteries
    Xu, Chengyang
    Ge, Aimin
    Kannari, Koki
    Peng, Baoxu
    Xue, Min
    Ding, Bing
    Inoue, Ken-ichi
    Zhang, Xiaogang
    Ye, Shen
    ACS ENERGY LETTERS, 2023, 8 (03) : 1289 - 1299
  • [7] Pt and Pd catalyzed oxidation of Li2O2 and DMSO during Li-O2 battery charging
    Gittleson, Forrest S.
    Ryu, Won-Hee
    Schwab, Mark
    Tong, Xiao
    Taylor, Andre D.
    CHEMICAL COMMUNICATIONS, 2016, 52 (39) : 6605 - 6608
  • [8] Aprotic and Aqueous Li-O2 Batteries
    Lu, Jun
    Li, Li
    Park, Jin-Bum
    Sun, Yang-Kook
    Wu, Feng
    Amine, Khalil
    CHEMICAL REVIEWS, 2014, 114 (11) : 5611 - 5640
  • [9] Solid-state activation of Li2O2 oxidation kinetics and implications for Li-O2 batteries
    Yao, Koffi P. C.
    Risch, Marcel
    Sayed, Sayed Youssef
    Lee, Yueh-Lin
    Harding, Jonathon R.
    Grimaud, Alexis
    Pour, Nir
    Xu, Zhichuan
    Zhou, Jigang
    Mansour, Azzam
    Barde, Fanny
    Shao-Horn, Yang
    ENERGY & ENVIRONMENTAL SCIENCE, 2015, 8 (08) : 2417 - 2426
  • [10] Quantitation of Li2O2 stored in Li-O2 batteries based on its reaction with an oxoammonium salt
    Hase, Yoko
    Ito, Emi
    Shiga, Tohru
    Mizuno, Fuminori
    Nishikoori, Hidetaka
    Iba, Hideki
    Takechi, Kensuke
    CHEMICAL COMMUNICATIONS, 2013, 49 (75) : 8389 - 8391