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The mechanism for negative photochromism of spiropyran in silica

机译:螺吡喃在二氧化硅中的负光致变色机理

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The mechanism for negative photochromism of spiropyran in silica was investigated. Prior to our study, the chemical origin of the high thermal stability of the photomerocyanine form (PMC-form) dispersed in perhydropolysilazane (PHPS), which is converted to silica at ambient temperature, had been investigated. The high thermal stability of the PMC-form is attributed to the protonated PMC-form (H?PMC-form), which is produced by intermolecular hydrogen bonding between oxide anions generated by the cleavage of the C - O bonds and the partially uncondensed Si - OH and O - H bonds of silica. Furthermore, the H?PMC-form could be thermally isomerized from the SP-form without UV light irradiation. This specific phenomenon is caused by the so-called negative photochromism. In this study, we proposed a mechanism for negative photochromism according to the relationship of the highest occupied molecular orbital (HOMO) and the lowest unoccupied molecular orbital (LUMO). The relationship between the HOMOs was determined using cyclic voltammetry (CV) and ultraviolet photoelectron spectroscopy (UPS). On the other hand, the relationship between the LUMOs was determined from the respective optical bandgap. As a result, the HOMO level of H?PMC-form was -6.1 eV and that of SP-form was -5.3 eV. Accordingly, the thermodynamic stabilization of H?PMC-form was attributed to the thermal isomerization through negative photochromism from the SP-form.
机译:研究了螺吡喃在二氧化硅中的负光致变色机理。在我们的研究之前,已经研究了分散在全氢聚硅氮烷(PHPS)中的光金属花青形式(PMC-形式)的高热稳定性的化学来源,该化合物在环境温度下会转化为二氧化硅。 PMC形式的高热稳定性归因于质子化的PMC形式(H 2 PMC形式),该质子化是通过C-O键断裂和部分未缩合的Si产生的氧化物阴离子之间的分子间氢键产生的。二氧化硅的-OH和O-H键。此外,H 2 PMC形式可以从SP形式热异构化而无需紫外线照射。这种特定现象是由所谓的负光致变色引起的。在这项研究中,我们根据最高占据分子轨道(HOMO)与最低未占据分子轨道(LUMO)的关系提出了一种负光致变色的机理。使用循环伏安法(CV)和紫外光电子能谱(UPS)确定HOMO之间的关系。另一方面,LUMO之间的关系由各自的光学带隙确定。结果,H 2 PMC形式的HOMO能级为-6.1eV,SP形式的HOMO能级为-5.3eV。因此,H 2 PMC形式的热力学稳定性归因于SP形式的负光致变色作用引起的热异构化。

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