Manipulating D-A interaction to achieve stable photoinduced organic radicals in triphenylphosphine crystals

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Abstract

New strategies for the design and synthesis of stable organic radicals without additives are highly desirable. Herein, we design a series of donor-acceptor structured triarylphosphines and disclose the fast color change triggered by UV-irradiation in the crystalline state. Photoinduced organic radicals are undoubtedly verified and proved to be the reason for the color change by time-dependent and quantitative electron paramagnetic resonance analysis, X-ray crystallographic analysis, and theoretical calculations. It is revealed that the intrinsic symmetry breaking of peripheral architecture helps to form continuous molecular chains by donor-acceptor counterpart pairing. Intermolecular electron-transfer occurs among molecular chains and results in radical ion pairs upon photoirradiation.

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Tang, C., Song, L., Zhou, K., Ren, P., Zhao, E., & He, Z. (2023). Manipulating D-A interaction to achieve stable photoinduced organic radicals in triphenylphosphine crystals. Chemical Science, 14(7), 1871–1877. https://doi.org/10.1039/d2sc05753k

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