Efficiently improving oxygen evolution activity using hierarchical α-Co (OH)2/polypyrrole/graphene oxide nanosheets

被引:26
作者
Mao, Hui [1 ]
Guo, Xi [1 ]
Fu, Yuanlin [1 ]
Cao, Zhenqian [1 ]
Sun, Dayin [1 ]
Wang, Baoxin [1 ]
Zhang, Yu [1 ]
Fan, Qinzhen [2 ]
Song, Xi-Ming [1 ]
机构
[1] Liaoning Univ, Coll Chem, Liaoning Key Lab Green Synth & Preparat Chem Adv, Shenyang 110036, Liaoning, Peoples R China
[2] PetroChina Fushun Petrochem Co, Fushun 113008, Peoples R China
基金
中国国家自然科学基金;
关键词
alpha-Co(OH)(2); Polypyrrole/graphene oxide (PPy/GO); Oxygen evolution reaction (OER); FACILE SYNTHESIS; WATER OXIDATION; ELECTROCHEMICAL SYNTHESIS; CO3O4; NANOSHEETS; ACTIVATED CARBON; GRAPHENE OXIDE; POLYPYRROLE; COMPOSITE; ELECTROCATALYST; NANOPARTICLES;
D O I
10.1016/j.apsusc.2019.04.195
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
Design and exploit earth-abundant and inexpensive materials as highly active oxygen evolution reaction electrocatalysts for water splitting plays a crucial role for developing renewable energy sources and technologies. Herein, alpha-Co(OH)(2) nanoplates (average thickness of 8-10 nm) are uniformly distributed on polypyrrole/graphene oxide by a very facile method because of coordinating Co2+ with -NH- segments in polypyrrole chains. The electrocatalytic activity towards oxygen evolution reaction can be efficiently improved by alpha-Co(OH)(2)/ polypyrrole/graphene oxide as electrocatalysts with high activity, strong durability and good stability by the synergies between components and the remarkable hierarchical nanostructures, whose overpotential and Tafel slope can be achieved to 350 mV @ 10 mA cm(-2) and 74.5 mV dec(-1), respectively. The introduction of polypyrrole not only enhances the nanocomposite conductivity, which effectively facilitates the electronic transmission of oxygen evolution reaction, but also optimizes the uniform distribution of alpha-Co(OH)(2) nanoplates on polypyrrole/graphene oxide, which results in more exposed active sites ascribed to the excellent hierarchical nanostructures. Therefore, conducting polymers as the supports for transition metal compounds can efficiently improve its electrocatalytic performance of oxygen evolution reaction, which will be beneficial to electrocatalytic water splitting.
引用
收藏
页码:554 / 563
页数:10
相关论文
共 72 条
[1]   Electrodeposition of Polypyrrole and Reduced Graphene Oxide onto Carbon Bundle Fibre as Electrode for Supercapacitor [J].
Bashid, Hamra Assyaima Abdul ;
Lim, Hong Ngee ;
Kamaruzaman, Sazlinda ;
Rashid, Suraya Abdul ;
Yunus, Robiah ;
Huang, Nay Ming ;
Yin, Chun Yang ;
Rahman, Mohammad Mahbubur ;
Altarawneh, Mohammednoor ;
Jiang, Zhong Tao ;
Alagarsamy, Pandikumar .
NANOSCALE RESEARCH LETTERS, 2017, 12
[2]   Nickel nanoparticles catalyse reversible hydration of carbon dioxide for mineralization carbon capture and storage [J].
Bhaduri, Gaurav A. ;
Siller, Lidija .
CATALYSIS SCIENCE & TECHNOLOGY, 2013, 3 (05) :1234-1239
[3]   Hierarchical Ni(OH)2/Polypyrrole/Graphene Oxide Nanosheets as Excellent Electrocatalysts for the Oxidation of Urea [J].
Cao, Zhenqian ;
Mao, Hui ;
Guo, Xi ;
Sun, Dayin ;
Sun, Zhijia ;
Wang, Baoxin ;
Zhang, Yu ;
Song, Xi-Ming .
ACS SUSTAINABLE CHEMISTRY & ENGINEERING, 2018, 6 (11) :15570-15581
[4]   Ammonia gas sensor based on electrosynthesized polypyrrole films [J].
Carquigny, Stephanie ;
Sanchez, Jean-Baptiste ;
Berger, Franck ;
Lakard, Boris ;
Lallemand, Fabrice .
TALANTA, 2009, 78 (01) :199-206
[5]   Conductivity and long term stability of polypyrrole poly(styrene-co-methacrylic acid) core-shell particles at different polypyrrole loadings [J].
Carrillo, I. ;
Sanchez de la Blanca, E. ;
Fierro, J. L. G. ;
Raso, M. A. ;
Accion, F. ;
Enciso, E. ;
Redondo, M. I. .
THIN SOLID FILMS, 2013, 539 :154-160
[6]   Direct electrochemical synthesis and characterization of polypyrrole nano- and micro-snails [J].
Chebil, S. ;
Monod, M. O. ;
Fisicaro, P. .
ELECTROCHIMICA ACTA, 2014, 123 :527-534
[7]   In situ evolution of highly dispersed amorphous CoOx clusters for oxygen evolution reaction [J].
Chen, Dawei ;
Dong, Chung-Li ;
Zou, Yuqin ;
Su, Dong ;
Huang, Yu-Cheng ;
Tao, Li ;
Dou, Shuo ;
Shen, Shaohua ;
Wang, Shuangyin .
NANOSCALE, 2017, 9 (33) :11969-11975
[8]   Imidazolate-mediated assembled structures of Co-LDH sheets for efficient electrocatalytic oxygen evolution [J].
Chen, Liyong ;
Guo, Yuting ;
Wang, Huifang ;
Gu, Zhizhi ;
Zhang, Yingyue ;
Li, Xuezhao ;
Wang, Hong ;
Duan, Chunying .
JOURNAL OF MATERIALS CHEMISTRY A, 2018, 6 (11) :4636-4641
[9]   Facile Synthesis of CoWO4 Nanosheet Arrays Grown on Nickel Foam Substrates for Asymmetric Supercapacitors [J].
Chen, Sanming ;
Yang, Guang ;
Jia, Yi ;
Zheng, Huajun .
CHEMELECTROCHEM, 2016, 3 (09) :1490-1496
[10]   Biocatalytic synthesis of polypyrrole powder, colloids, and films using horseradish peroxidase [J].
Cruz-Silva, R. ;
Amaro, E. ;
Escamilla, A. ;
Nicho, M. E. ;
Sepulveda-Guzman, S. ;
Arizmendi, L. ;
Romero-Garcia, J. ;
Castillon-Barraza, F. F. ;
Farias, M. H. .
JOURNAL OF COLLOID AND INTERFACE SCIENCE, 2008, 328 (02) :263-269