Simultaneous Cobalt and Phosphorous Doping of MoS2 for Improved Catalytic Performance on Polysulfide Conversion in Lithium-Sulfur Batteries

被引:150
作者
Lin, Haibin [1 ]
Zhang, Shengliang [1 ]
Zhang, Tianran [1 ]
Ye, Hualin [1 ]
Yao, Qiaofeng [1 ]
Zheng, Guangyuan Wesley [1 ]
Lee, Jim Yang [1 ]
机构
[1] Natl Univ Singapore, Dept Chem & Biomol Engn, 10 Kent Ridge Crescent, Singapore 119260, Singapore
关键词
catalytic performance; cobalt-phosphorus doping; lithium-sulfur batteries; molybdenum disulfide; polysulfide conversions; EFFICIENT ELECTROCATALYST; OXYGEN REDUCTION; HETEROSTRUCTURES; NANOWIRES; LI2S;
D O I
10.1002/aenm.201902096
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The lithium-sulfur batteries are susceptible to the loss of sulfur as dissolved polysulfides in the electrolyte and their ensuing redox shutting effect. The acceleration of the conversion kinetics of dissolved polysulfides into the insoluble sulfur and lithium sulfide via electrocatalysis has the appeal of being a root-cause solution. MoS2 is the most common electrocatalyst used for this purpose. It is demonstrated that how the effectiveness can be improved by simultaneous cobalt and phosphorus doping of MoS2 nanotubes (P-Mo0.9Co0.1S2-2, containing 1.81 at% of P). Cobalt doping induces the transformation of MoS2 from 2H phase to metallic 1T phase, which improves the electrical conductivity of the MoS2. The Co-P coordinated sites on the catalyst surface are highly active for the polysulfide conversion reactions. Consequently, a sulfur cathode with P-Mo0.9Co0.1S2-2 can decrease the capacity fade rate from 0.28% per cycle before modification (over 150 cycles at 0.5C rate) to 0.046% per cycle after modification (over 600 cycles at 1C rate). P-Mo0.9Co0.1S2-2 also enhances the high rate performance from a capacity of 338 to 931 mAh g(-1) at 6C rate. The results of this study provide the first direct evidence of the beneficial effects of heteroatom codoping of polysulfide conversion catalysts.
引用
收藏
页数:9
相关论文
共 55 条
  • [1] Efficient Hydrogen Evolution Reaction Catalysis in Alkaline Media by All-in-One MoS2 with Multifunctional Active Sites
    Anjum, Mohsin Ali Raza
    Jeong, Hu Young
    Lee, Min Hee
    Shin, Hyeon Suk
    Lee, Jae Sung
    [J]. ADVANCED MATERIALS, 2018, 30 (20)
  • [2] Stabilizing Li-S Battery Through Multilayer Encapsulation of Sulfur
    Ansari, Younes
    Zhang, Sonia
    Wen, Bohua
    Fan, Frank
    Chiang, Yet-Ming
    [J]. ADVANCED ENERGY MATERIALS, 2019, 9 (01)
  • [3] Transition Metal Dichalcogenide Atomic Layers for Lithium Polysulfides Electrocatalysis
    Babu, Ganguli
    Masurkar, Nirul
    Al Salem, Hesham
    Arave, Leela Mohana Reddy
    [J]. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2017, 139 (01) : 171 - 178
  • [4] Experimental and Theoretical Analysis of Products and Reaction Intermediates of Lithium-Sulfur Batteries
    Canas, Natalia A.
    Fronczek, David N.
    Wagner, Norbert
    Latz, Arnulf
    Friedrich, K. Andreas
    [J]. JOURNAL OF PHYSICAL CHEMISTRY C, 2014, 118 (23) : 12106 - 12114
  • [5] Atomic Interlamellar Ion Path in High Sulfur Content Lithium-Montmorillonite Host Enables High-Rate and Stable Lithium-Sulfur Battery
    Chen, Wei
    Lei, Tianyu
    Lv, Weiqiang
    Hu, Yin
    Yan, Yichao
    Jiao, Yu
    He, Weidong
    Li, Zhenghan
    Yan, Chenglin
    Xiong, Jie
    [J]. ADVANCED MATERIALS, 2018, 30 (40)
  • [6] Porous ZnMn2O4 nanospheres: Facile synthesis through microemulsion method and excellent performance as anode of lithium ion battery
    Chen, Xiaoqiao
    Zhang, Yuanming
    Lin, Haibin
    Xia, Pan
    Cai, Xia
    Li, Xiaogang
    Li, Xiaoping
    Li, Weishan
    [J]. JOURNAL OF POWER SOURCES, 2016, 312 : 137 - 145
  • [7] Co-Fe Mixed Metal Phosphide Nanocubes with Highly Interconnected-Pore Architecture as an Efficient Polysulfide Mediator for Lithium-Sulfur Batteries
    Chen, Yi
    Zhang, Wenxue
    Zhou, Dong
    Tian, Huajun
    Su, Dawei
    Wang, Chengyin
    Stockdale, Declan
    Kang, Feiyu
    Li, Baohua
    Wang, Guoxiu
    [J]. ACS NANO, 2019, 13 (04) : 4731 - 4741
  • [8] Enhancing Electrocatalytic Oxygen Reduction on MnO2 with Vacancies
    Cheng, Fangyi
    Zhang, Tianran
    Zhang, Yi
    Du, Jing
    Han, Xiaopeng
    Chen, Jun
    [J]. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2013, 52 (09) : 2474 - 2477
  • [9] Multiscale structural and electronic control of molybdenum disulfide foam for highly efficient hydrogen production
    Deng, Jiao
    Li, Haobo
    Wang, Suheng
    Ding, Ding
    Chen, Mingshu
    Liu, Chuan
    Tian, Zhongqun
    Novoselov, K. S.
    Ma, Chao
    Deng, Dehui
    Bao, Xinhe
    [J]. NATURE COMMUNICATIONS, 2017, 8
  • [10] Cobalt in Nitrogen-Doped Graphene as Single-Atom Catalyst for High-Sulfur Content Lithium-Sulfur Batteries
    Du, Zhenzhen
    Chen, Xingjia
    Hu, Wei
    Chuang, Chenghao
    Xie, Shuai
    Hu, Ajuan
    Yan, Wensheng
    Kong, Xianghua
    Wu, Xiaojun
    Ji, Hengxing
    Wan, Li-Jun
    [J]. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2019, 141 (09) : 3977 - 3985