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The importance of the rotor in hydrazone-based molecular switches

机译:在基于molecular的分子开关中的重要性

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The pH-activated E/Z isomerization of a series of hydrazone-based systems having different functional groups as part of the rotor (R = COMe, CN, Me, H), was studied. The switching efficiency of these systems was compared to that of a hydrazone-based molecular switch (R = COOEt) whose E/Z isomerization is fully reversible. It was found that the nature of the R group is critical for efficient switching to occur; the R group should be a moderate H-bond acceptor in order to (i) provide enough driving force for the rotor to move upon protonation, and (ii) stabilize the obtained Z configuration, to achieve full conversion.
机译:研究了一系列具有不同官能团作为转子一部分的of基体系的pH活化E / Z异构化(R = COMe,CN,Me,H)。将这些系统的开关效率与基于E的分子开关(R = COOEt)进行了比较,该E的分子的E / Z异构化是完全可逆的。已经发现,R基团的性质对于有效的转换发生至关重要。 R基团应该是一个适度的H键受体,以便(i)提供足够的驱动力以使转子在质子化时运动,以及(ii)稳定获得的Z构型以实现完全转化。

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