光催化
电子转移
质子耦合电子转移
催化作用
化学
光化学
有机合成
质子
电子
光子
光催化
纳米技术
材料科学
物理
有机化学
核物理学
光学
作者
Amreen K. Bains,Arindam Sau,Brandon S. Portela,Kajal Kajal,Alexander R. Green,Anna Wolff,Ludovic F. Patin,Robert S. Paton,Niels H. Damrauer,Garret M. Miyake
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2025-06-19
卷期号:388 (6753): 1294-1300
标识
DOI:10.1126/science.adw1648
摘要
Photoredox catalysis driven by visible light has improved chemical synthesis by enabling milder reaction conditions and unlocking distinct reaction mechanisms. Despite the transformative impact, visible-light photoredox catalysis remains constrained by the thermodynamic limits of photon energy and inefficiencies arising from unproductive back electron transfer, both of which become particularly pronounced in thermodynamically demanding reactions. In this work, we introduce an organic photoredox catalyst system that overcomes these obstacles to drive chemical transformations that require super-reducing capabilities. This advancement is accomplished by coupling the energy of two photons into a single chemical reduction, whereas inefficiencies from back electron transfer are mitigated through a distinct proton-coupled electron transfer mechanism embedded in the catalyst design. The super-reducing capabilities of this organic catalyst system are demonstrated through efficient application in a broad scope of challenging arene reductions.
科研通智能强力驱动
Strongly Powered by AbleSci AI