Accelerating NADH oxidation and hydrogen production with mid-gap states of nitrogen-rich carbon nitride photocatalyst

  • Bhoyar, Toshali; 
  • Kim, Dong Jin; 
  • Abraham, B. Moses; 
  • Gupta, Akanksha; 
  • Maile, Nagesh; 
  • 외 4명
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WEB OF SCIENCE

18
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SCOPUS

18

초록

Regeneration of electron carriers such as NAD(+)/NADH is highly desirable and essential for enzymatic conversions. Here, we demonstrate a sustainable strategy for the regeneration of NAD(+) as an electron carrier via photon-assisted heterogeneous catalysis. For this, a mid-gap state induced nitrogen-rich polymeric carbon nitride (NPCN) catalyst was synthesized by an additive-assisted thermal copolymerization. Utilizing NPCN as a photocatalyst presented NADH photooxidation efficiency of over 98% and a high hydrogen production rate of 11.18 mmolg(-1)h(-1) with an apparent quantum yield of 9.16% (lambda = 420 nm), outperforming other state-of-art metal-free photocatalysts. The experimental and theoretical simulations suggest that mid-gap states in NPCN catalyst are main platform for charge-carrier separation that enhances the overall photocatalytic performance.

키워드

Catalysis; Materials chemistry; Materials science; ENERGY-CONVERSION; G-C3N4; WATER
제목
Accelerating NADH oxidation and hydrogen production with mid-gap states of nitrogen-rich carbon nitride photocatalyst
저자
Bhoyar, Toshali; Kim, Dong Jin; Abraham, B. Moses; Gupta, Akanksha; Maile, Nagesh; Manwar, Nilesh R.; Tonda, Surendar; Vidyasagar, Devthade; Umare, Suresh S.
DOI
10.1016/j.isci.2022.105567
발행일
2022-12-22
유형
Article
저널명
ISCIENCE
권
25
호
12