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Highly dispersed Co nanoparticles decorated on a N-doped defective carbon nano-framework for a hybrid Na-air battery
Zhu, Jingyi1; Qu, Tao1,2; Su, Fengmei1; Wu, Yuqi1; Kang, Yao3; Chen, Kunfeng4; Yao, Yaochun1; Ma, Wenhui1; Yang, Bing1; Dai, Yongnian1; Liang, Feng1,2; Xue, Dongfeng4
2020-01-03
Source PublicationDALTON TRANSACTIONS
ISSN1477-9226
Volume49Issue:6Pages:1811-1821
Abstract

Efficient and low-cost bifunctional electrocatalysts for the oxygen reduction reaction (ORR) and the oxygen evolution reaction (OER) are of vital importance in energy conversion. Herein, an excellent highly dispersed Co nanoparticle decorated N-doped defective carbon nano-framework (Co-N-C) derived from a ZnCo bimetal organic framework (bi-MOF) is reported. A high specific surface area originating from zinc evaporation facilitates the adsorption and desorption of oxygen, which promotes the accessibility of catalytic sites. The abundant Co-N-C species act as strong bridging bonds between Co nanoparticles and carbon materials which facilitate interfacial electron transfer. Co-N-C-0.5 (0.5 represents the molar ratio of Zn in the initial ZIF-67) exhibits a low overpotential gap of 0.94 V due to the number of active sites (e.g. N-doped defective carbon and the CoN/Co composite) and fast interfacial electron transfer. In addition, a hybrid Na-air battery with the Co-N-C-0.5 material displays a low voltage gap of 0.31 V and a high round-trip efficiency of 90.0% at a current density of 0.1 mA cm. More importantly, the hybrid Na-air battery shows fantastic cyclability for charging and discharging due to its stable structure. Our results confirm Co-N-C materials derived from a bi-MOF as alternatives to high-cost Pt/C catalysts for ORR and OER activities in metal-air batteries.

DOI10.1039/c9dt04073k
URLView the original
Indexed BySCIE
Language英語English
WOS Research AreaChemistry
WOS SubjectChemistry, Inorganic & Nuclear
WOS IDWOS:000514861300012
PublisherROYAL SOC CHEMISTRYTHOMAS GRAHAM HOUSE, SCIENCE PARK, MILTON RD, CAMBRIDGE CB4 0WF, CAMBS, ENGLAND
Scopus ID2-s2.0-85079249591
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Document TypeJournal article
CollectionINSTITUTE OF APPLIED PHYSICS AND MATERIALS ENGINEERING
Corresponding AuthorKang, Yao; Liang, Feng
Affiliation1.Faculty of Metallurgical and Energy Engineering, Kunming University of Science and Technology, Kunming, 650093, China
2.State Key Laboratory of Complex Nonferrous Metal Resources Clean Utilization, Kunming University of Science and Technology, Kunming, 650093, China
3.Institute of Applied Physics and Materials Engineering, University of Macau, Taipa, Avenida da Universidade, Macao
4.State Key Laboratory of Rare Earth Resources Utilization, Chinese Academy of Science, Changchun, 130022, China
Corresponding Author AffilicationINSTITUTE OF APPLIED PHYSICS AND MATERIALS ENGINEERING
Recommended Citation
GB/T 7714
Zhu, Jingyi,Qu, Tao,Su, Fengmei,et al. Highly dispersed Co nanoparticles decorated on a N-doped defective carbon nano-framework for a hybrid Na-air battery[J]. DALTON TRANSACTIONS, 2020, 49(6), 1811-1821.
APA Zhu, Jingyi., Qu, Tao., Su, Fengmei., Wu, Yuqi., Kang, Yao., Chen, Kunfeng., Yao, Yaochun., Ma, Wenhui., Yang, Bing., Dai, Yongnian., Liang, Feng., & Xue, Dongfeng (2020). Highly dispersed Co nanoparticles decorated on a N-doped defective carbon nano-framework for a hybrid Na-air battery. DALTON TRANSACTIONS, 49(6), 1811-1821.
MLA Zhu, Jingyi,et al."Highly dispersed Co nanoparticles decorated on a N-doped defective carbon nano-framework for a hybrid Na-air battery".DALTON TRANSACTIONS 49.6(2020):1811-1821.
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