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Taming Macromolecules with Light: Lessons Learned from Vibrational Spectroscopy

机译:用Light驯服大分子:从振动光谱学到的经验教训

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Exciting new applications, from large-area nanopatterning and templating to soft light-powered robotics, are emerging from the fundamental research on light-triggered changes in macromolecular systems upon photoisomerization of azobenzene-based molecular photoswitches. The understanding of how the initial molecular-scale photoisomerization of azobenzene, a complex photochemical event in itself, is translated into the response of macromolecules and even into macroscopic-scale motion of illuminated azomaterials is an enormous task. The focus here is on how this knowledge has advanced by applying different vibrational spectroscopy techniques that provide rich molecular insight into the photoresponse of chemically specific molecular moieties. In particular, infrared and Raman spectroscopy studies are highlighted, in the context of phototriggered perturbation of self-assembled structures and photoinduced linear and circular anisotropy, as well as photoinduced surface patterning, with the objective of offering a perspective on how vibrational spectroscopy can help in answering an array of essential yet unsettled questions.
机译:从大区域纳米透射机械和柔软光源机器人的模板,令人兴奋的新应用正在从大苯苯的分子照相机的光致作用作用于大分子系统的显着变化的基本研究。理解偶氮苯的初始分子尺度光学异构化如何自身,复杂的光化学事件本身是如何转化为大分子的响应,甚至进入照射尿道的宏观级运动是一个巨大的任务。这里的重点是通过应用不同的振动光谱技术,这些知识通过提供了对化学特异性分子部分的光响应而提供丰富的分子洞察力。特别地,在自组装结构的光电扰动的背景下突出显示红外和拉曼光谱研究,以及光突出表面图案化,目的是提供振动光谱如何有助于如何帮助的视角回答一系列必不可少的尚未消化的问题。

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