首页> 外文学位 >Tether-assisted [2+2] photocycloaddition of dicyclopentadiene derivatives and carbon cored tripodal sensitizers for semiconductor nanoparticles.
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Tether-assisted [2+2] photocycloaddition of dicyclopentadiene derivatives and carbon cored tripodal sensitizers for semiconductor nanoparticles.

机译:用于半导体纳米粒子的双环戊二烯衍生物和碳核三脚架敏化剂的系链辅助[2 + 2]光环加成。

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This thesis consists of three chapters related to two projects. Chapter I describes the Cu(I)-catalyzed intramolecular [2+2] photocycloaddition of diesters made of endo-dicyclopentadiene derivatives linked by the ester bonds with alkyl or adamantyl based tethers. These reactions are highly regio- and stereoselective and the tethers can be easily cleaved afterward upon reduction with LiAlH4. Photolysis of the diesters afforded a 1:1 mixture of the heretofore unknown exo-cis-exo dimer, originating from the (R,S/S,R) diastereomer of the diester and the exo-trans-exo, deriving from the (R,R/S,S) diastereomer. The role of the tethers length and structure on the course of the photocycloadditions was investigated, and it was observed that adamantyl-based tethers provided the shortest reaction times and highest yields. X-ray diffraction analysis and NMR techniques were applied to characterize the syn and anti photocycloaddition products.; Chapter II describes the synthesis of two carbon cored tripod sensitizers: Ru(bpy)2(C-tripod-phen)2+, Ru(bpy)2(C-tripod-bpy) 2+ and the study of the electron transfer processes occurred at the tripod-sensitizer/semiconductor interfaces. IR spectroscopy showed that single carboxylic acid binding mode could be obtained by pretreating the TiO 2 films with an acidic solution. Tripod bound to the TiO 2 surface displayed a weak electronic coupling between the ruthenium sensitizer and the semiconductor. Nanosecond transient absorption spectroscopy showed that electron recombination could be fit to a sum of two second order processes. The rate of charge separation for tripod was not detected by femtosecond transient absorption spectroscopy indicating an injection faster than 110 fs (the length of the laser pulse) was occurred. The dipole moment changes from ground to excited state of tripods and other ruthenium model complexes were measured by Stark spectroscopy and it was found that the transferred electron at the excited state does not extend out further than the bipyridine or phenanthroline ring.
机译:本文由与两个项目有关的三章组成。第一章描述了Cu(I)催化的由酯键连接的 endo -dicyclopentadiene衍生物与基于烷基或金刚烷基的系链连接的二酯的分子内[2 + 2]光环加成反应。这些反应具有高度的区域选择性和立体选择性,并且在用LiAlH 4 还原后可以很容易地裂解系链。二酯的光解得到了迄今未知的 exo-cis-exo 二聚体的1:1混合物,其起源于二酯的(R,S / S,R)非对映异构体和 exo -trans-exo ,源自(R,R / S,S)非对映异构体。研究了系链长度和结构在光环加成过程中的作用,并且发现基于金刚烷基的系链提供了最短的反应时间和最高的产率。应用X射线衍射分析和NMR技术表征了 syn 光环加成产物。第二章介绍了两种碳核三脚架敏化剂的合成:Ru(bpy) 2 (C-tripod-phen) 2 + ,Ru(bpy) 2 < / sub>(C-tripod-bpy) 2 + 和电子转移过程的研究发生在三脚架敏化剂/半导体的界面。红外光谱表明,用酸性溶液预处理TiO 2 薄膜可以得到单一的羧酸结合模式。结合在TiO 2 表面的三脚架在钌敏化剂和半导体之间显示出弱的电子耦合。纳秒瞬态吸收光谱表明,电子复合可能适合于两个二级过程的总和。飞秒瞬态吸收光谱法未检测到三脚架的电荷分离速率,表明发生了比110 fs(激光脉冲长度)更快的注入。用Stark光谱法测量了三脚架和其他钌模型配合物的偶极矩从基态到激发态的变化,发现在激发态转移的电子没有比联吡啶或菲咯啉环更伸张。

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