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Light-driven C-H activation mediated by 2D transition metal dichalcogenides.

Jingang LiDi ZhangZhongyuan GuoZhihan ChenXi JiangJonathan M LarsonHaoyue ZhuTianyi ZhangYuqian GuBrian W BlankenshipMin ChenZilong WuSuichu HuangRobert KosteckiAndrew M MinorCostas P GrigoropoulosDeji AkinwandeMauricio TerronesJoan Marie RedwingHao LiYuebing Zheng
Published in: Nature communications (2024)
C-H bond activation enables the facile synthesis of new chemicals. While C-H activation in short-chain alkanes has been widely investigated, it remains largely unexplored for long-chain organic molecules. Here, we report light-driven C-H activation in complex organic materials mediated by 2D transition metal dichalcogenides (TMDCs) and the resultant solid-state synthesis of luminescent carbon dots in a spatially-resolved fashion. We unravel the efficient H adsorption and a lowered energy barrier of C-C coupling mediated by 2D TMDCs to promote C-H activation and carbon dots synthesis. Our results shed light on 2D materials for C-H activation in organic compounds for applications in organic chemistry, environmental remediation, and photonic materials.
Keyphrases
  • transition metal
  • solid state
  • risk assessment
  • climate change
  • sensitive detection
  • human health
  • light emitting
  • life cycle