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具有激发态分子内质子转移(ESIPT)配体的铱配合物中的溶剂调制质子耦合电子转移

Solvent-modulated proton-coupled electron transfer in an iridium complex with an ESIPT ligand.

作者信息

Kim Siin, Choi Jungkweon, Cho Dae Won, Ahn Mina, Eom Seunghwan, Kim Jungmin, Wee Kyung-Ryang, Ihee Hyotcherl

机构信息

Department of Chemistry and KI for the BioCentury, Korea Advanced Institute of Science and Technology (KAIST) Daejeon 34141 Republic of Korea.

Center for Advanced Reaction Dynamics, Institute for Basic Science Daejeon 34141 Republic of Korea

出版信息

Chem Sci. 2022 Mar 5;13(13):3809-3818. doi: 10.1039/d1sc07250a. eCollection 2022 Mar 30.

Abstract

Proton-coupled electron transfer (PCET), an essential process in nature with a well-known example of photosynthesis, has recently been employed in metal complexes to improve the energy conversion efficiency; however, a profound understanding of the mechanism of PCET in metal complexes is still lacking. In this study, we synthesized cyclometalated Ir complexes strategically designed to exploit the excited-state intramolecular proton transfer (ESIPT) of the ancillary ligand and studied their photoinduced PCET in both aprotic and protic solvent environments using femtosecond transient absorption spectroscopy and density functional theory (DFT) and time-dependent DFT calculations. The data reveal solvent-modulated PCET, where charge transfer follows proton transfer in an aprotic solvent and the temporal order of charge transfer and proton transfer is reversed in a protic solvent. In the former case, ESIPT from the enol form to the keto form, which precedes the charge transfer from Ir to the ESIPT ligand, improves the efficiency of metal-to-ligand charge transfer. This finding demonstrates the potential to control the PCET reaction in the desired direction and the efficiency of charge transfer by simply perturbing the external hydrogen-bonding network with the solvent.

摘要

质子耦合电子转移(PCET)是自然界中的一个重要过程,光合作用就是一个广为人知的例子,最近它已被应用于金属配合物中以提高能量转换效率;然而,对金属配合物中PCET机制仍缺乏深入理解。在本研究中,我们合成了经过策略性设计的环金属化铱配合物,以利用辅助配体的激发态分子内质子转移(ESIPT),并使用飞秒瞬态吸收光谱、密度泛函理论(DFT)和含时DFT计算,研究了它们在非质子和质子溶剂环境中的光致PCET。数据揭示了溶剂调制的PCET,即在非质子溶剂中电荷转移跟随质子转移,而在质子溶剂中电荷转移和质子转移的时间顺序相反。在前一种情况下,从烯醇形式到酮形式的ESIPT在从铱到ESIPT配体的电荷转移之前发生,提高了金属到配体电荷转移的效率。这一发现表明,通过简单地用溶剂扰动外部氢键网络,有可能将PCET反应控制在期望的方向并提高电荷转移效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/03f9/8966730/44ae79744957/d1sc07250a-f1.jpg

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