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树枝状大分子作为光化学反应介质。水溶性树枝状大分子中单分子和双分子反应的光化学行为。

Dendrimers as photochemical reaction media. Photochemical behavior of unimolecular and bimolecular reactions in water-soluble dendrimers.

作者信息

Kaanumalle Lakshmi S, Ramesh R, Murthy Maddipatla V S N, Nithyanandhan Jayaraj, Jayaraman Narayanaswamy, Ramamurthy V

机构信息

Department of Chemistry, University of Miami, Coral Gables, FL 33124, USA.

出版信息

J Org Chem. 2005 Jun 24;70(13):5062-9. doi: 10.1021/jo0503254.

Abstract

Synthesis and studies of poly(alkyl aryl ether) dendrimers, possessing carboxylic acid functionalities at their peripheries, are reported. 5-Bromopentyloxy methylisophthalate was utilized as the monomer to O-alkylate the phenolic hydroxyl groups of poly(alkyl aryl ether) dendrimers. Dendrimers of first, second, and third generations, possessing 6, 12, and 24 carboxylic acids, respectively, were thus prepared. These dendrimers were soluble in alkaline aqueous solutions, and the ensuing microenvironmental properties of the aqueous solutions were assessed by pyrene solubilization studies. Upon establishing the presence of nonpolar microenvironments within the dendritic structures, solubilizations of few organic substrates were conducted and their photochemical behaviors were assessed. Specifically, the photolysis of 1-phenyl-3-p-tolyl-propan-2-one and benzoin ethyl ether and photodimerization of acenaphthylene were conducted. These studies revealed that the product distribution and the "cage effect" were more distinct and efficient for the third generation dendrimer, than for the first and second generation dendrimers. The photochemical studies of carboxylic acid functionalized dendrimers were compared to that of hydroxyl group terminated poly(alkyl aryl ether) dendrimers.

摘要

报道了在其外围具有羧酸官能团的聚(烷基芳基醚)树枝状大分子的合成及研究。5-溴戊氧基间苯二甲酸甲酯被用作单体,对聚(烷基芳基醚)树枝状大分子的酚羟基进行O-烷基化。由此制备了分别具有6个、12个和24个羧酸的第一代、第二代和第三代树枝状大分子。这些树枝状大分子可溶于碱性水溶液,并通过芘增溶研究评估了所得水溶液的微环境性质。在确定树枝状结构内存在非极性微环境后,进行了几种有机底物的增溶,并评估了它们的光化学行为。具体而言,进行了1-苯基-3-对甲苯基-丙-2-酮和安息香乙醚的光解以及苊的光二聚反应。这些研究表明,与第一代和第二代树枝状大分子相比,第三代树枝状大分子的产物分布和“笼效应”更为明显和有效。将羧酸官能化树枝状大分子的光化学研究与羟基封端的聚(烷基芳基醚)树枝状大分子的光化学研究进行了比较。

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