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硫代吖啶酮和硫代香豆素中的电子弛豫途径:两种吸收可见光的无重原子光敏剂。

Electronic relaxation pathways in thio-acridone and thio-coumarin: two heavy-atom-free photosensitizers absorbing visible light.

作者信息

Acquah Chris, Hoehn Sean, Krul Sarah, Jockusch Steffen, Yang Shudan, Seth Sourav Kanti, Lee Eric, Xiao Han, Crespo-Hernández Carlos E

机构信息

Department of Chemistry, Case Western Reserve University, Cleveland, OH 44106, USA.

Center for Photochemical Sciences, Bowling Green State University, Bowling Green, Ohio, 43403, USA.

出版信息

Phys Chem Chem Phys. 2024 Nov 27;26(46):28980-28991. doi: 10.1039/d4cp03720k.

Abstract

Heavy-atom-free photosensitizers (HAF-PSs) have emerged as a new class of photosensitizers aiming to broaden their applicability and versatility across various fields of the photodynamic therapy of cancers. The strategy involves replacing the exocyclic oxygen atoms of the carbonyl groups of established biocompatible organic fluorophores with sulfur, thereby bathochromically shifting their absorption spectra and enhancing their intersystem crossing efficiencies. Despite these advancements, the photophysical attributes and electronic relaxation mechanisms of many of these HAF-PSs remain inadequately elucidated. In this study, we investigate the excited state dynamics and photochemical properties of two promising HAF-PSs, thio-coumarin and thio-acridone. Employing a combination of steady-state and time-resolved techniques from femtoseconds to microseconds, coupled with quantum chemical calculations, we unravel the electronic relaxation mechanisms that give rise to the efficient population of long-lived and reactive triplet states in these HAF-PSs.

摘要

无重原子光敏剂(HAF-PSs)已成为一类新型光敏剂,旨在拓宽其在癌症光动力治疗各个领域的适用性和多功能性。该策略包括用硫取代已确立的生物相容性有机荧光团羰基的环外氧原子,从而使它们的吸收光谱发生红移并提高其系间窜越效率。尽管有这些进展,但许多此类HAF-PSs的光物理特性和电子弛豫机制仍未得到充分阐明。在本研究中,我们研究了两种有前景的HAF-PSs,硫代香豆素和硫代吖啶酮的激发态动力学和光化学性质。我们采用从飞秒到微秒的稳态和时间分辨技术相结合,并结合量子化学计算,揭示了导致这些HAF-PSs中长寿命和反应性三重态有效填充的电子弛豫机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7662/11570880/c063f19b395d/d4cp03720k-s1.jpg

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