A High-Energy-Density Potassium Battery with a Polymer-Gel Electrolyte and a Polyaniline Cathode

被引:247
作者
Gao, Hongcai [1 ]
Xue, Leigang [1 ]
Xin, Sen [1 ]
Goodenough, John B. [1 ]
机构
[1] Univ Texas Austin, Texas Mat Inst, Austin, TX 78712 USA
关键词
cathode materials; polyaniline; polymer electrolytes; potassium batteries; potassium metal anodes; ORGANIC ELECTRODE; HIGH-PERFORMANCE; SODIUM-SULFONATE; LITHIUM-ION; LOW-COST; POLYPYRROLE;
D O I
10.1002/anie.201802248
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
A safe, rechargeable potassium battery of high energy density and excellent cycling stability has been developed. The anion component of the electrolyte salt is inserted into a polyaniline cathode upon charging and extracted from it during discharging while the K+ ion of the KPF6 salt is plated/stripped on the potassium-metal anode. The use of a p-type polymer cathode increases the cell voltage. By replacing the organic-liquid electrolyte in a glass-fiber separator with a polymer-gel electrolyte of cross-linked poly(methyl methacrylate), a dendrite-free potassium anode can be plated/stripped, and the electrode/electrolyte interface is stabilized. The potassium anode wets the polymer, and the cross-linked architecture provides small pores of adjustable sizes to stabilize a solid-electrolyte interphase formed at the anode/electrolyte interface. This alternative electrolyte/cathode strategy offers a promising new approach to low-cost potassium batteries for the stationary storage of electric power.
引用
收藏
页码:5449 / 5453
页数:5
相关论文
共 46 条
[1]   On the correlation between surface chemistry and performance of graphite negative electrodes for Li ion batteries [J].
Aurbach, D ;
Markovsky, B ;
Weissman, I ;
Levi, E ;
Ein-Eli, Y .
ELECTROCHIMICA ACTA, 1999, 45 (1-2) :67-86
[2]   A novel K-ion battery: hexacyanoferrate(II)/graphite cell [J].
Bie, Xiaofei ;
Kubota, Kei ;
Hosaka, Tomooki ;
Chihara, Kuniko ;
Komaba, Shinichi .
JOURNAL OF MATERIALS CHEMISTRY A, 2017, 5 (09) :4325-4330
[3]   Organic electrode for non-aqueous potassium-ion batteries [J].
Chen, Yanan ;
Luo, Wei ;
Carter, Marcus ;
Zhou, Lihui ;
Dai, Jiaqi ;
Fu, Kun ;
Lacey, Steven ;
Li, Tian ;
Wan, Jiayu ;
Han, Xiaogang ;
Bao, Yanping ;
Hu, Liangbing .
NANO ENERGY, 2015, 18 :205-211
[4]   Conducting poly(aniline) nanotubes and nanofibers: Controlled synthesis and application in lithium/poly(aniline) rechargeable batteries [J].
Cheng, FY ;
Tang, W ;
Li, CS ;
Chen, J ;
Liu, HK ;
Shen, PW ;
Dou, SX .
CHEMISTRY-A EUROPEAN JOURNAL, 2006, 12 (11) :3082-3088
[5]   Self-Templated Formation of P2-type K0.6CoO2 Microspheres for High Reversible Potassium-Ion Batteries [J].
Deng, Tao ;
Fan, Xiulin ;
Luo, Chao ;
Chen, Ji ;
Chen, Long ;
Hou, Singyuk ;
Eidson, Nico ;
Zhou, Xiuquan ;
Wang, Chunsheng .
NANO LETTERS, 2018, 18 (02) :1522-1529
[6]   Potassium secondary cell based on Prussian blue cathode [J].
Eftekhari, A .
JOURNAL OF POWER SOURCES, 2004, 126 (1-2) :221-228
[7]   Potassium Secondary Batteries [J].
Eftekhari, Ali ;
Jian, Zelang ;
Ji, Xiulei .
ACS APPLIED MATERIALS & INTERFACES, 2017, 9 (05) :4404-4419
[8]  
Gao H., 2017, Angewandte Chemie, V129, P5633, DOI [10.1002/ange.201702003, DOI 10.1002/ANGE.201702003]
[9]   Integrated Carbon/Red Phosphorus/Graphene Aerogel 3D Architecture via Advanced Vapor-Redistribution for High-Energy Sodium-Ion Batteries [J].
Gao, Hong ;
Zhou, Tengfei ;
Zheng, Yang ;
Liu, Yuqing ;
Chen, Jun ;
Liu, Huakun ;
Guo, Zaiping .
ADVANCED ENERGY MATERIALS, 2016, 6 (21)
[10]   A Plastic-Crystal Electrolyte Interphase for All-Solid-State Sodium Batteries [J].
Gao, Hongcai ;
Xue, Leigang ;
Xin, Sen ;
Park, Kyusung ;
Goodenough, John B. .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2017, 56 (20) :5541-5545