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When Light and Acid Play Tic-Tac-Toe with a Nine-State Molecular Switch

机译:当光和酸用九态分子开关播放井字游戏时

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Combining different molecular switching functions in a single molecule is a simple strategy to develop commutable molecules featuring more than two commutation states. The present study reports on two molecular systems consisting of two indolino-oxazolidine (Box) moieties connected to an aromatic bridge (phenyl or bithiophene) by ethylenic junctions. Such systems, referenced as BiBox, are expected to show up multiaddressable and multiresponsive behaviors. On one hand, the oxazolidine ring opening/closure of Box moieties can be addressed by chemical stimuli, and on the other hand, the trans-to-cis isomerization of the ethylenic junctions is induced by visible light irradiation (with a thermal back conversion). NMR and UV–visible spectroscopies allowed to characterize up to nine out of the ten theoretically expected commutation states as well as to measure the kinetics of the interconversions. Also, steady state fluorescence spectroscopy measurements highlighted the strong influence of the open/closed states of the Box moieties on their emission properties.
机译:在单个分子中组合不同的分子转换功能是开发具有两个以上交换状态的可交换分子的简单策略。本研究报告了由两个吲哚并恶唑烷(Box)部分通过烯键连接到芳族桥(苯基或联噻吩)上的两个分子系统。这种被称为BiBox的系统有望表现出多址和多响应行为。一方面,Box部位的恶唑烷环开/闭可以通过化学刺激来解决,另一方面,烯键的反式-顺式异构化是通过可见光照射(热反向转化)引起的。 。 NMR和UV可见光谱仪可表征十个理论上预期的换向状态中的多达九个,并测量相互转换的动力学。同样,稳态荧光光谱测量突出显示了盒部分的打开/关闭状态对其发射性质的强烈影响。

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