Matches in SemOpenAlex for { <https://semopenalex.org/work/W4384010231> ?p ?o ?g. }
- W4384010231 endingPage "10894" @default.
- W4384010231 startingPage "10885" @default.
- W4384010231 abstract "The development of productive and sustainable bifunctional electrocatalysts for the oxygen reduction reaction (ORR) and oxygen evolution reaction (OER) plays an important role in the commercial evolution of metal-air batteries. In this paper, a low-temperature molten salt template method was adopted to synthesize the composite of CoS2 and nitrogen-doped carbon (CoS2/NC) without the protection of inert gas. The structural characterization studies show that the specific surface area (SSA) and crystal growth kinetics are increased and effectively improved, respectively, by the composite of CoS2 and NC. The as-synthesized CoS2/NC composite demonstrates outstanding bifunctional catalytic activity in alkaline electrolytes and exhibits a half-wave potential (E1/2) of 0.854 V (vs. RHE) and an overpotential of only 220 mV for the OER at a current density of 10 mA cm-2 (η10). Simultaneously, CoS2/NC also exhibits excellent electrochemical stability. Additionally, density functional theory (DFT) calculations have manifested that the synergistic effect of CoS2 and NC results in a remarkable enhancement in the bifunctional catalytic performance of the composite materials. This study offers a new pathway and theoretical guidance for the fabrication of efficient bifunctional electrocatalysts." @default.
- W4384010231 created "2023-07-13" @default.
- W4384010231 creator A5012822831 @default.
- W4384010231 creator A5013427594 @default.
- W4384010231 creator A5023144664 @default.
- W4384010231 creator A5035767746 @default.
- W4384010231 creator A5056660097 @default.
- W4384010231 creator A5057119900 @default.
- W4384010231 creator A5067652261 @default.
- W4384010231 creator A5088510061 @default.
- W4384010231 date "2023-01-01" @default.
- W4384010231 modified "2023-10-17" @default.
- W4384010231 title "Low-temperature molten salt synthesis and catalytic mechanism of CoS<sub>2</sub>/NC as an advanced bifunctional electrocatalyst" @default.
- W4384010231 cites W1965752441 @default.
- W4384010231 cites W1973891115 @default.
- W4384010231 cites W1990669928 @default.
- W4384010231 cites W2042759225 @default.
- W4384010231 cites W2044591029 @default.
- W4384010231 cites W2055563809 @default.
- W4384010231 cites W2083222334 @default.
- W4384010231 cites W2094894332 @default.
- W4384010231 cites W2167035995 @default.
- W4384010231 cites W2548201546 @default.
- W4384010231 cites W2603831713 @default.
- W4384010231 cites W2604928421 @default.
- W4384010231 cites W2613696999 @default.
- W4384010231 cites W2770664810 @default.
- W4384010231 cites W2785198785 @default.
- W4384010231 cites W2792115291 @default.
- W4384010231 cites W2797205677 @default.
- W4384010231 cites W2810761219 @default.
- W4384010231 cites W2836353977 @default.
- W4384010231 cites W2889532993 @default.
- W4384010231 cites W2898048821 @default.
- W4384010231 cites W2911186102 @default.
- W4384010231 cites W2914800887 @default.
- W4384010231 cites W2915547125 @default.
- W4384010231 cites W2919286142 @default.
- W4384010231 cites W2930935142 @default.
- W4384010231 cites W2942978654 @default.
- W4384010231 cites W2962995897 @default.
- W4384010231 cites W2981499554 @default.
- W4384010231 cites W2997659532 @default.
- W4384010231 cites W3000249517 @default.
- W4384010231 cites W3003649114 @default.
- W4384010231 cites W3007656404 @default.
- W4384010231 cites W3009283555 @default.
- W4384010231 cites W3009839259 @default.
- W4384010231 cites W3012381244 @default.
- W4384010231 cites W3036704667 @default.
- W4384010231 cites W3087869603 @default.
- W4384010231 cites W3090522296 @default.
- W4384010231 cites W3119797550 @default.
- W4384010231 cites W3134241145 @default.
- W4384010231 cites W3136807287 @default.
- W4384010231 cites W3148801403 @default.
- W4384010231 cites W3158158510 @default.
- W4384010231 cites W3171395795 @default.
- W4384010231 cites W3194385005 @default.
- W4384010231 cites W3201089668 @default.
- W4384010231 cites W3214842073 @default.
- W4384010231 cites W4207008095 @default.
- W4384010231 cites W4210340990 @default.
- W4384010231 cites W4210911231 @default.
- W4384010231 cites W4213386901 @default.
- W4384010231 cites W4282579717 @default.
- W4384010231 cites W4283327150 @default.
- W4384010231 cites W4294845225 @default.
- W4384010231 cites W4309570844 @default.
- W4384010231 cites W4310376435 @default.
- W4384010231 cites W4316362987 @default.
- W4384010231 cites W4318263399 @default.
- W4384010231 cites W4365790790 @default.
- W4384010231 cites W4366083155 @default.
- W4384010231 cites W4367665784 @default.
- W4384010231 cites W82472435 @default.
- W4384010231 doi "https://doi.org/10.1039/d3dt01694c" @default.
- W4384010231 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/37486320" @default.
- W4384010231 hasPublicationYear "2023" @default.
- W4384010231 type Work @default.
- W4384010231 citedByCount "2" @default.
- W4384010231 countsByYear W43840102312023 @default.
- W4384010231 crossrefType "journal-article" @default.
- W4384010231 hasAuthorship W4384010231A5012822831 @default.
- W4384010231 hasAuthorship W4384010231A5013427594 @default.
- W4384010231 hasAuthorship W4384010231A5023144664 @default.
- W4384010231 hasAuthorship W4384010231A5035767746 @default.
- W4384010231 hasAuthorship W4384010231A5056660097 @default.
- W4384010231 hasAuthorship W4384010231A5057119900 @default.
- W4384010231 hasAuthorship W4384010231A5067652261 @default.
- W4384010231 hasAuthorship W4384010231A5088510061 @default.
- W4384010231 hasConcept C104779481 @default.
- W4384010231 hasConcept C127413603 @default.
- W4384010231 hasConcept C135473242 @default.
- W4384010231 hasConcept C147789679 @default.
- W4384010231 hasConcept C159985019 @default.
- W4384010231 hasConcept C161790260 @default.
- W4384010231 hasConcept C17525397 @default.