Sheth Sujitraj, Gotico Philipp, Herrero Christian, Quaranta Annamaria, Aukauloo Ally, Leibl Winfried
CEA, CNRS, Institut de Biologie Intégrative de la Cellule (I2BC), Université Paris Saclay, 91198, Gif-sur-Yvette, France.
Current affiliation , National Key Laboratory of Green Pesticide, Guizhou University, Guiyang, 550025, Guizhou, China.
Chemistry. 2024 Jun 25;30(36):e202400862. doi: 10.1002/chem.202400862. Epub 2024 May 29.
A close mimic of P680 and the Tyrosine-Histidine pair in photosystem II (PS II) has been synthesized using a ruthenium chromophore and imidazole-phenol ligands. The intramolecular oxidation of the ligands by the photoproduced Ru(III) species is characterized by a small driving force, very similar to PS II where the complexity of kinetics was attributed to the reversibility of electron transfer steps. Laser flash photolysis revealed biphasic kinetics for ligand oxidation. The fast phase (τ<50 ns) corresponds to partial oxidation of the imidazole-phenol ligand, proton transfer within the hydrogen bond, and formation of a neutral phenoxyl radical. The slow phase (5-9 μs) corresponds to full oxidation of the ligand which is kinetically controlled by deprotonation of the distant 1-nitrogen of the imidazolium. These results show that imidazole with its two protonatable sites plays a special role as a proton relay in a 'proton domino' reaction.
使用钌发色团和咪唑 - 苯酚配体合成了一种与光系统II(PS II)中的P680及酪氨酸 - 组氨酸对紧密模拟的物质。光生Ru(III) 物种对配体的分子内氧化具有较小的驱动力,这与PS II非常相似,在PS II中,动力学的复杂性归因于电子转移步骤的可逆性。激光闪光光解揭示了配体氧化的双相动力学。快速相(τ<50 ns)对应于咪唑 - 苯酚配体的部分氧化、氢键内的质子转移以及中性苯氧自由基的形成。慢速相(5 - 9 μs)对应于配体的完全氧化,其动力学受咪唑鎓远位1 - 氮去质子化控制。这些结果表明,具有两个可质子化位点的咪唑在“质子多米诺”反应中作为质子中继起特殊作用。