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NAD(P)H-Inspired CO 2 Reduction Based on Organohydrides.

Wenjin DongChuanjun WangYutai ZouWenshuo WangJian Liu
Published in: ACS applied materials & interfaces (2024)
The conversion of CO 2 into value-added chemicals and fuels using stable, cost-effective, and eco-friendly metal-free catalysts is a promising technology to mitigate the global environmental crisis. In the Calvin cycle of natural photosynthesis, CO 2 reduction (CO 2 R) is achieved using the cofactor NADPH as the reducing agent through 2 e - /1H + or H - transfer. Consequently, inspired by NAD(P)H, a series of organohydrides with adjustable reducibility show remarkable potential for efficient metal-free CO 2 R. In this review, we first summarize the photosensitizers for NAD(P)H regeneration and list the representative photoenzyme CO 2 R system. Then, we introduce the NAD(P)H-inspired organohydrides and their applications in redox reactions. Furthermore, we discuss recent progress and breakthroughs by utilizing organohydrides as metal-free CO 2 R catalysts. Moreover, we delve into the reaction mechanisms and applications of these organohydrides, shedding light on their potential as sustainable alternatives to metal-based CO 2 R catalysts. Finally, we offer insights into the prospects and potential directions for advancing this intriguing avenue of organohydride-based catalysts for CO 2 R.
Keyphrases
  • highly efficient
  • human health
  • transition metal
  • stem cells
  • public health
  • metal organic framework
  • risk assessment
  • cross sectional
  • reactive oxygen species
  • climate change
  • electron transfer