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Effect of pressure on photochromic furylfulgide

机译:压力对光致变色呋喃酮的影响

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The effect of pressure on photochromic furylfulgide is investigated using monodispersed molecules in solution and molecules in a single crystal by measuring the optical absorption at room temperature under pressure provided using a diamond anvil cell. Monodispersed open-ring (E-form) and closed-ring (C-form) isomers in solution are stable under high pressure; however, pressure-induced E → C isomerisation is observed in a single crystal composed of E-form molecules above 3.0 GPa without UV irradiation. Photochromism of furylfulgide can be observed under high pressures up to 5.0 GPa in both monodispersed molecules and single crystals. In a single crystal, photoinduced conversion from the E-form to the C-form accelerates above a critical value when the fraction of C-form molecules becomes relatively large; this critical value depends on the applied pressure. The acceleration is due to the effect of the surrounding molecules, i.e., destabilisation of E-form molecules surrounded by a sufficient number of photoconverted C-form molecules results in conversion of the E-form molecule without the absorption of a photon.
机译:使用溶液中的单分散分子和单晶中的分子,通过在室温下使用金刚石砧盒提供的压力下测量光吸收,来研究压力对光致变色呋喃基夫格雷的影响。溶液中的单分散开环(E型)和闭环(C型)异构体在高压下稳定;然而,在由3.0 GPa以上的E型分子组成的单晶中,在没有紫外线照射的情况下,观察到压力诱导的E→C异构化。在单分散分子和单晶中,在高达5.0 GPa的高压下均可观察到呋喃夫苷的光致变色现象。在单晶中,当C形分子的比例变得相对较大时,从E形到C形的光诱导转化会加速至高于临界值。该临界值取决于所施加的压力。加速是由于周围分子的作用所致,即,被足够数量的光转化的C型分子包围的E型分子的不稳定导致了E型分子的转化而不吸收光子。

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