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Iminothioindoxyl as a molecular photoswitch with 100 nm band separation in the visible range

机译:亚氨基硫代吲哚作为分子光开关在可见光范围内具有100 nm的谱带分离

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摘要

Light is an exceptional external stimulus for establishing precise control over the properties and functions of chemical and biological systems, which is enabled through the use of molecular photoswitches. Ideal photoswitches are operated with visible light only, show large separation of absorption bands and are functional in various solvents including water, posing an unmet challenge. Here we show a class of fully-visible-light-operated molecular photoswitches, Iminothioindoxyls (ITIs) that meet these requirements. ITIs show a band separation of over 100 nm, isomerize on picosecond time scale and thermally relax on millisecond time scale. Using a combination of advanced spectroscopic and computational techniques, we provide the rationale for the switching behavior of ITIs and the influence of structural modifications and environment, including aqueous solution, on their photochemical properties. This research paves the way for the development of improved photo-controlled systems for a wide variety of applications that require fast responsive functions.
机译:光是一种特殊的外部刺激,它可以通过使用分子光电开关来实现对化学和生物系统特性和功能的精确控制。理想的光电开关只能在可见光下操作,显示吸收带分离较大,并且在包括水在内的各种溶剂中都可以发挥作用,这是一个未解决的挑战。在这里,我们展示了满足这些要求的一类全可见光操作的分子光电开关,亚氨基硫代吲哚酚(ITI)。 ITI显示出超过100 separationnm的谱带间距,在皮秒级的时间范围内异构化,在毫秒级的时间范围内热弛豫。结合先进的光谱学和计算技术,我们为ITI的转换行为以及结构修饰和环境(包括水溶液)对其光化学性质的影响提供了理论依据。这项研究为开发改进的光控系统铺平了道路,该系统适用于需要快速响应功能的各种应用。

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