Residential College | false |
Status | 已發表Published |
Interfacial electron transfer on heterostructured Ni3Se4/FeOOH endows highly efficient water oxidation in alkaline solutions | |
Lv, Lin1,2; Chang, Yaoxing1; Ao, Xiang1; Li, Zhishan1; Li, Jina Gang1; Wu, Ying3; Xue, Xinying4; Cao, Yulin5; Guo, Hong6,7; Wang, Chundong1,3 | |
2020-09-01 | |
Source Publication | Materials Today Energy |
ISSN | 2468-6069 |
Volume | 17Pages:100462 |
Abstract | Exploring high-active catalyst for oxygen evolution reaction (OER) is paramount for efficient and eco-friendly conversion of renewable electricity to hydrogen fuels. In this study, we report a new strategy to significantly enhance the OER activity of NiSe nanochains via growth of uniformly vertical FeOOH ultrathin nanoneedles on the surface. The as-prepared catalyst demonstrates splendid OER performance with a low overpotential of 249.0 mV for driving a current density of 10 mA cm, yielding a small Tafel slope of 46 mV dec. After continuous operation of 10 h, a tiny degeneration of 4.0% is afforded, evidencing the excellent durability of the catalyst. On the basis of electrochemical measurement together with theoretical analysis, we attribute the boosted OER kinetics to the synergistic effect of electron, geometry and interface, concretely, two main reasons should be emphasized: 1) the complementary adsorption/desorption nature of nickel and iron leads to optimized Gibbs free energy; 2) redistribution of localized π-symmetry electrons at the interface endows the favorable adsorption/desorption for the oxygenated species. We anticipate that our work would push boundaries for the fabrication of high-performance transition metal- and selenium-based electrocatalysts. |
Keyword | Electron Redistribution Oxygen Evolution Porous Nanochains Selenides Π-symmetry Electrons |
DOI | 10.1016/j.mtener.2020.100462 |
URL | View the original |
Indexed By | SCIE |
Language | 英語English |
WOS Research Area | Chemistry ; Energy & Fuels ; Materials Science |
WOS Subject | Chemistry, Physical ; Energy & Fuels ; Materials Science, Multidisciplinary |
WOS ID | WOS:000576975100004 |
Scopus ID | 2-s2.0-85087591530 |
Fulltext Access | |
Citation statistics | |
Document Type | Journal article |
Collection | INSTITUTE OF APPLIED PHYSICS AND MATERIALS ENGINEERING |
Corresponding Author | Guo, Hong; Wang, Chundong |
Affiliation | 1.Wuhan National Laboratory for Optoelectronics, School of Optical and Electronic Information, Huazhong University of Science and Technology, Wuhan, 430074, China 2.Key Laboratory of Pesticide and Chemical Biology, Ministry of Education, College of Chemistry, Central China Normal University, Wuhan, 430079, China 3.College of Life Science, Tarim University, Alaer, 843300, China 4.Department of Physics, College of Science, Shihezi University, Shihezi, 832003, China 5.Physics Laboratory, Industrial Training Center, Shenzhen Polytechnic, Shenzhen, 518055, China 6.The Institute of Applied Physics and Materials Engineering, University of Macau, Avenida da Universidade, Taipa, 999078, Macao 7.Department of Physics and Chemistry, Faculty of Science and Technology, University of Macau. Avenida da Universidade, Taipa, 999078, Macao |
Corresponding Author Affilication | INSTITUTE OF APPLIED PHYSICS AND MATERIALS ENGINEERING; Faculty of Science and Technology |
Recommended Citation GB/T 7714 | Lv, Lin,Chang, Yaoxing,Ao, Xiang,et al. Interfacial electron transfer on heterostructured Ni3Se4/FeOOH endows highly efficient water oxidation in alkaline solutions[J]. Materials Today Energy, 2020, 17, 100462. |
APA | Lv, Lin., Chang, Yaoxing., Ao, Xiang., Li, Zhishan., Li, Jina Gang., Wu, Ying., Xue, Xinying., Cao, Yulin., Guo, Hong., & Wang, Chundong (2020). Interfacial electron transfer on heterostructured Ni3Se4/FeOOH endows highly efficient water oxidation in alkaline solutions. Materials Today Energy, 17, 100462. |
MLA | Lv, Lin,et al."Interfacial electron transfer on heterostructured Ni3Se4/FeOOH endows highly efficient water oxidation in alkaline solutions".Materials Today Energy 17(2020):100462. |
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