Synthesis and photochemical properties of insoluble poly(styrene) beads containing pendant norbornadiene moieties

Tadatomi Nishikubo, Atsushi Kameyama, Katsuhiko Kishi, Chikara Hijikata
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引用次数: 10

Abstract

Insoluble polymer beads bearing pendant norbornadiene (NBD) moieties were synthesized by the substitution reaction of insoluble chloromethylated poly(styrene) beads with potassium salts of certain NBD derivatives having carboxylic acid or phenol groups using a phase transfer catalyst. The reaction proceeded smoothly in high conversions in DMF at 90°C for 72 h to give the corresponding insoluble polymer beads bearing NBD moieties. Rates of photochemical reaction of the obtained insoluble polymer beads were measured by IR spectrometry using KBr disk plates. The photochemical valence isomerization from 3-phehyl-2,5-NBD-2-carboxylate (PNCA) moiety to the corresponding quadricyclane (QC) group and catalytic reversion from QC to the NBD moiety were also examined in dichloromethane, and it was found that the photochemical valence isomerization and the catalytic reversion in insoluble polymer beads can be recycled in high conversions at last for 10 runs.

含降冰片二烯不溶性聚苯乙烯珠的合成及光化学性质
采用相转移催化剂,将不溶性氯甲基化聚苯乙烯微球与含有羧酸或酚基的NBD衍生物的钾盐进行取代反应,合成了含有悬垂降冰片二烯(NBD)的不溶性聚合物微球。反应在DMF中90°C高转化率下进行72 h,得到相应的含NBD基团的不溶性聚合物珠。用KBr圆盘板红外光谱法测定所得不溶性聚合物微球的光化学反应速率。在二氯甲烷中考察了3-苯基-2,5-NBD-2-羧酸酯(PNCA)片段光化学价异构化反应和相应的四环(QC)基团光化学价异构化反应和QC催化还原反应,发现不溶性聚合物珠中的光化学价异构化和催化还原反应可以在10次以上的高转化率中循环利用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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