切换点击通过时间分辨红外光谱追踪光二溴乙烷-OH 的超快光化学过程

L. Denninger, H. Brunst, L. J. G. W. van Wilderen, M. Horz, H. M. A. Masood, C. D. McNitt, I. Burghardt, V. V. Popik, J. Bredenbeck
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引用次数: 0

摘要

点击化学是指为在生物介质中接枝生物(大)分子而开发的选择性反应。笼式点击化合物已被用于时空控制点击反应。在此,我们研究了将光二苯并环辛炔-OH(photoDIBO-OH)解笼为其点击化学活性形式 DIBO-OH的过程,并特别关注其转化时间尺度和效率。紫外泵-红外探针实验揭示了一种逐步脱羰基的过程:首先,一氧化碳(C≡O)在 1.8 ps 内释放,然后,在 10 ps 内转化为 DIBO-OH。完成解笼的效率高达 50%。在长波长(700 nm)下成功演示了双光子释放光DIBO-OH,增强了其在体内的兼容性,并以相同的时间尺度进行。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Switch the click: Ultrafast photochemistry of photoDIBO-OH tracked by time-resolved IR spectroscopy
Click chemistry refers to selective reactions developed for grafting of bio(macro)molecules in their biological media. Caged click compounds have been employed to spatiotemporally control click reactions. Here, we survey the uncaging of photo-dibenzocyclooctyne-OH (photoDIBO-OH) to its click-chemistry active form DIBO-OH, with particular attention to its conversion timescale and efficiency. Ultraviolet pump–infrared probe experiments reveal a stepwise decarbonylation: first, carbon monoxide (C≡O) is released within 1.8 ps, and then, it converts, within 10 ps, to DIBO-OH. Completion of uncaging is achieved with an efficiency of ∼50%. A successful demonstration of two-photon uncaging of photoDIBO-OH at long wavelength (700 nm) confers enhanced in vivo compatibility and proceeds on the same timescale.
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