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Dual-wavelength efficient two-photon photorelease of glycine by π-extended dipolar coumarins

机译:π扩展偶极香豆素对甘氨酸的双波长高效双光子光释放

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Photolabile protecting groups (PPGs) releasing bioactive compounds upon two-photon excitation have emerged as increasingly popular tools to control and study physiological processes. Yet the limited two-photon photosensitivity of many cages is still a critical issue for applications. We herein report the design, synthesis and photophysical study of polarized extended coumarinyl derivatives which show large two-photon sensitivity (up to 440 GM) at two complementary wavelengths in the NIR spectral range. DFT calculations demonstrate that subtle tuning of polarization in the ground-state and confinement of the photo-induced intramolecular charge transfer upon excitation is responsible for enhancing two-photon absorption while maintaining large uncaging efficiency. These findings open a new engineering route towards efficient coumarinyl PPGs.
机译:在两个光子激发下释放生物活性化合物的光不稳定保护基(PPG)已成为控制和研究生理过程的越来越流行的工具。然而,许多笼子有限的两光子光敏性仍然是应用中的关键问题。我们在此报告了极化扩展香豆素衍生物的设计,合成和光物理研究,这些衍生物在NIR光谱范围内的两个互补波长下显示出大的双光子灵敏度(高达440 GM)。 DFT计算表明,基态极化的微调和激发后光诱导分子内电荷转移的限制是增强双光子吸收的原因,同时保持了较大的解开效率。这些发现为高效香豆素PPG开辟了一条新的工程路线。

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