化学
电子转移
光激发
自由基离子
发色团
超快激光光谱学
化学物理
激发态
光化学
质子耦合电子转移
质子
直接的
光诱导电子转移
分子物理学
电子
闪光光解
量子产额
原子物理学
光解
圆锥交点
单重态
四烯
女性化学
超短脉冲
量子
内部转换
分子内力
超快电子衍射
异构化
协同反应
电荷(物理)
溶剂化电子
Atom(片上系统)
作者
Rui Liu,Zachary X. W. Widel,Jiaqi Zhu,Jarrett P. Mansergh,Aubrey R. Caplin,Samuel I. Mann,Ian Bakanas,Nicholas F. Polizzi,Peng Zhang,William F. DeGrado,David N. Beratan,Michael J. Therien
摘要
Proton-coupled electron transfer (PCET) reactions mediate essential biological energy-conversion processes, yet dynamical experiments that distinguish concerted electron/proton motion from sequential electron-transfer/proton-transfer pathways are unprecedented on ultrafast time scales. Here we report a tightly coupled donor-spacer-acceptor assembly, NDI-Sp-PhOH/BI, that enables direct interrogation of light-triggered and ultrafast PCET dynamics. Photoexcitation of the naphthalene diimide chromophore drives charge separation forming NDI radical anion and benzimidazolium phenoxy radical (PhO•/BIH+) products with a 440 fs time constant, followed by thermal charge recombination on a 5 ps time scale. Transient visible/near-infrared and mid-infrared spectroscopies independently track electron and proton motion and reveal coincident formation and decay of the charge-separated PCET products, excluding detectable phenol radical cation or phenoxide intermediates expected for sequential electron transfer-proton transfer (ET-PT) pathways. Surface-hopping quasiclassical trajectory simulations demonstrate rapid proton relocation coupled to evolution from locally excited to charge-transfer states, congruent with a concerted mechanism. These combined spectroscopic and computational results establish NDI-Sp-PhOH/BI as an archetype for ultrafast, concerted PCET occurring with unit quantum yield; further, because this platform provides distinct electronic and vibrational spectroscopic handles in its ground, electronically excited, and charge-separated states, it provides new opportunities to characterize mechanistic crossover in biomimetic PCET systems.
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