Sustainable hydrogen peroxide production based on dopamine through Janus-like mechanism transition from chemical to photocatalytic reactions
  • 이도연
  • 박민주
  • 김남히
  • 구민수
  • HYOUNG-IL KIM
  • 외 1명
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초록

With increasing interest in hydrogen peroxide (H2O2) as an environmentally friendly oxidant for environmental remediation and a promising liquid fuel, we present herein a novel method for green and sustainable H2O2 production using versatile dopamine-based materials, demonstrating the conversion of H2O2 generation mechanism from a chemical to a photocatalytic process along with the structural transformation of dopamine to polydopamine. During the auto-oxidation of dopamine in the presence of oxygen, which involved the transition of catechol to hydroquinone groups and the ring closure of the amine group, H2O2 was chemically generated at a rate of 1.61 mmol g-1h?1 without an extra electron donor and additional energy sources. In contrast, self-polymerized polydopamine exhibited an effective photocatalytic H2O2 generation at a rate of 0.53 mmol g-1h?1 owing to its visible light absorptivity and semiconducting property. We anticipate that these unique properties of dopamine will provide a new class of organic-based, highly efficient solar-to-H2O2 conversion and sustainable energy systems in the future.

키워드

DopaminePolydopaminePhotocatalystsHydrogen peroxideSILVER NANOPARTICLESPOLYDOPAMINE FILMSGREEN SYNTHESISOXIDATIONENERGYEPOXIDATIONNANOSHEETSEUMELANINEVOLUTIONG-C3N4
제목
Sustainable hydrogen peroxide production based on dopamine through Janus-like mechanism transition from chemical to photocatalytic reactions
저자
이도연박민주김남히구민수HYOUNG-IL KIMBYEONG-SU KIM
DOI
10.1016/j.jcat.2022.05.017
발행일
2022-07
유형
Article
저널명
Journal of Catalysis
411
페이지
234 ~ 244

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