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      KCI등재 SCOPUS SCIE

      Facile synthesis of AgPt nano-pompons for efficient methanol oxidation: Morphology control and DFT study on stability enhancement

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      https://www.riss.kr/link?id=A108623559

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      다국어 초록 (Multilingual Abstract)

      Facile synthesis of more dendritic and uniform Pt-based nanostructures with carbon materials couldgreatly reduce cost and increase Pt utilization for methanol oxidation reaction (MOR) in direct methanolfuel cell (DMFC). This study reports a novel one-...

      Facile synthesis of more dendritic and uniform Pt-based nanostructures with carbon materials couldgreatly reduce cost and increase Pt utilization for methanol oxidation reaction (MOR) in direct methanolfuel cell (DMFC). This study reports a novel one-pot method to fabricate AgPt nano-pompons (AgPt NPs)with the guidance of N-GQDs through AA reduce the precursor of Ag and Pt. Morphology characterizationdescribes N-GQDs as morphology guiding and dispersing agents to regulate the dendrite formation ofnano-pompons. Under the optimized conditions, the AgPt NPs (Ag1Pt2) display above 11 times improvementin electrocatalytic activity and higher stability for the MOR compared with Pt/C catalysts. Densityfunction theory (DFT) studies prove that the introduction of Ag can greatly enhance the adsorption of COon Pt and promote the transformation of CO to COOH. The facile synthetic method and excellent MORperformance endow AgPt NPs with great application prospect in DMFCs as an anode catalyst.

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      참고문헌 (Reference) 논문관계도

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      7 N. Bhuvanendran, 45 : 6447-6460, 2020

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      10 Y. Zhang, 450 : 2022

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      2 X. Liu, 313 : 405-410, 2014

      3 X. H. Yan, 311 : 188-194, 2016

      4 M. G. F. Sales, 98 : 428-436, 2017

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      6 X. Cui, 56 : 4488-4493, 2017

      7 N. Bhuvanendran, 45 : 6447-6460, 2020

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      57 D. Ma, 383 : 98-105, 2016

      58 A. E. Russell, "Preface" 140 : 9-10, 2008

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