首页> 外文期刊>Journal of Photochemistry and Photobiology, A. Chemistry >Direct and sensitized (energy and electron transfer) geometric isomerization of stilbene within zeolites: a comparison between solution and zeolite as reaction media
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Direct and sensitized (energy and electron transfer) geometric isomerization of stilbene within zeolites: a comparison between solution and zeolite as reaction media

机译:沸石中二苯乙烯的直接和敏化(能量和电子转移)几何异构化:溶液和沸石作为反应介质的比较

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The trans- and cis-stilbenes upon inclusion in NaY zeolite are thermally stable. Direct excitation and triplet sensitization results in geometric isomerization and the excited state behavior under these conditions are similar to that in solution. Upon direct excitation, a photostationary state consisting of 65% cis and 35% trans isomers is established. Triplet sensitization with 2-acetonaphthone gave a photostationary state consisting of 63% cis and 37% trans isomers These numbers are similar to the ones obtained in solution. Thus, the presence of cations and the confined space within the zeolite have very little influence on the overall chemistry during direct and triplet sensitization. However, upon electron transfer sensitization with N-methylacridinium (NMA) as the sensitizer within NaY, isomerization from cis-stilbene radical cation to trans-stilbene occurs and the recombination of radical ions results in triplet stilbene. Prolonged irradiation gave a photostationary state (65% cis and 35% trans) similar to triplet sensitization. This behavior is unique to the zeolite and does not take lace in solution. Steady state fluorescence measurements showed that the majority of stilbene molecules are close to the N-methylacridinium sensitizer. Diffuse reflectance flash photolysis studies established that independent of the isomer being sensitized only trans radical cation is formed. Triplet stilbene is believed to be generated via recombination of stilbene radical cation and sensitizer radical anion. One should be careful in using acidic HY zeolite as a medium for photoisomerization of stilbenes. In our hands, in these acidic zeolites isomerization dominated the photoisomerization.
机译:包含在NaY沸石中的反式和顺式-对-苯乙烯基化合物是热稳定的。直接激发和三重态敏化导致几何异构化,并且在这些条件下的激发态行为与溶液中的类似。在直接激发后,建立了由65%的顺式和35%的反式异构体组成的光平稳态。用2-乙酰萘酮进行三重态敏化得到由63%的顺式和37%的反式异构体组成的光平稳状态。这些数字与溶液中获得的数字相似。因此,在直接和三重态敏化过程中,沸石中阳离子的存在和狭窄空间对整体化学的影响很小。但是,在NaY中使用N-甲基ac啶(NMA)作为敏化剂进行电子转移敏化时,会发生从顺二苯乙烯自由基阳离子到反式二苯乙烯的异构化,并且自由基离子的重组产生三重。长时间照射会产生类似于三重态敏化的光平稳状态(65%顺式和35%反式)。这种行为是沸石所独有的,不会在溶液中带花边。稳态荧光测量表明,大多数二苯乙烯分子都接近N-甲基ac啶敏化剂。漫反射快速光解研究表明,与被敏化的异构体无关,仅形成了自由基阳离子。三重被认为是通过自由基阳离子和敏化剂自由基阴离子的重组产生的。在使用酸性HY沸石作为对苯乙烯的光致异构化反应的介质时,应格外小心。在我们手中,在这些酸性沸石中,异构化主导了光异构化。

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