首页> 外文期刊>Microporous and mesoporous materials: The offical journal of the International Zeolite Association >High azobenzene functionalization enhances stability of the cis isomer: Periodic mesoporous organosilica network on the way to new light triggered applicable materials
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High azobenzene functionalization enhances stability of the cis isomer: Periodic mesoporous organosilica network on the way to new light triggered applicable materials

机译:高偶氮苯官能度增强了顺式异构体的稳定性:周期性的介孔有机硅网络正朝着新的光触发适用材料的方向发展

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摘要

Azobenzene and its derivatives are in the focus of research for the application as molecular switch for medical uses or industrial processes. An optical switchable azobenzene molecule was covalently anchored on the pore walls of a benzene molecule bridged periodic mesoporous organosilica material (abbreviated bz-PMO). The two step synthesis allowed the preparation of a hybrid material with a very high switch density exhibiting an extraordinary long half-life time of 87 h of the cis-isomer. The material was thoroughly characterized applying UV/Vis- and solid state NMR-spectroscopy demonstrating the successful covalent anchoring of the switch onto the pore walls. (C) 2016 Elsevier Inc. All rights reserved.
机译:偶氮苯及其衍生物是作为医学用途或工业过程的分子开关应用的研究重点。光学可切换的偶氮苯分子共价锚定在苯分子桥接的周期性中孔有机二氧化硅材料(缩写为bz-PMO)的孔壁上。两步合成使得可以制备具有非常高的开关密度的杂化材料,该杂化材料显示出非常长的顺式异构体半衰期87小时。使用紫外/可见和固态NMR光谱对材料进行了彻底表征,证明了该开关成功共价锚定在孔壁上。 (C)2016 Elsevier Inc.保留所有权利。

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