Mondal Saugat, Koay Wai Lean, Daga Ishan, Paul Sayan, Truong Vinh X, Singh N D Pradeep
Department of Chemistry, Indian Institute of Technology Kharagpur, Kharagpur 721302, India.
Institute of Sustainability for Chemicals, Energy and Environment (ISCE2), Agency for Science, Technology and Research (A*STAR), 1 Pesek Road, Jurong Island, Singapore 627833, Republic of Singapore.
J Am Chem Soc. 2024 Aug 21;146(33):23376-23386. doi: 10.1021/jacs.4c06373. Epub 2024 Aug 8.
Photocontrolled deprotection of specific functional groups has garnered significant interest over the past two decades. Notably, the selective deprotection of distinct groups based on wavelength has emerged as a prominent focus in recent research. The achievement of this objective has primarily involved the utilization of linker-based bichromophoric systems and diverse cocktail mixtures of photoresponsive protecting groups (PRPGs), each responsive to varying wavelengths of light. Herein, we present the first wavelength-selective monochromophoric system based on a hydroxanthene moiety, enabling the wavelength-selective release of two distinct functionalities under 450 and 600 nm light, respectively. The mechanism of the wavelength-selective photodegradation was thoroughly investigated by H NMR, UV-vis, and fluorescence spectroscopy, suggesting a proton-coupled electron transfer mechanism in the first photorelease step and electron transfer based arylmethyl type of photorelease in the second step. The utility of the xanthene-based wavelength-selective PRPGs was demonstrated in the multistep degradation of microparticles and dual-color tuning of polymer chain architecture, thus opening an avenue to design advanced photoreactive wavelength-controlled systems for applications in soft matter materials.
在过去二十年中,特定官能团的光控脱保护引起了广泛关注。值得注意的是,基于波长对不同基团进行选择性脱保护已成为近期研究的一个突出重点。实现这一目标主要涉及基于连接体的双发色团体系以及光响应保护基团(PRPGs)的各种混合鸡尾酒,每种都对不同波长的光有响应。在此,我们展示了首个基于氧杂蒽部分的波长选择性单发色团体系,能够分别在450和600 nm光下实现两种不同官能团的波长选择性释放。通过核磁共振氢谱(¹H NMR)、紫外可见光谱和荧光光谱对波长选择性光降解机理进行了深入研究,表明第一步光释放过程中存在质子耦合电子转移机制,第二步为基于电子转移的芳基甲基型光释放。基于氧杂蒽的波长选择性PRPGs在微粒的多步降解和聚合物链结构的双色调控中得到了应用,从而为设计用于软物质材料的先进光反应性波长控制系统开辟了一条途径。