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交联聚苯乙烯微球的表面化学改性及吡啶基卟啉的固载化
引用本文:田鹏,高保娇,张妍妍. 交联聚苯乙烯微球的表面化学改性及吡啶基卟啉的固载化[J]. 应用化学, 2010, 27(12): 1376-1380. DOI: 10.3724/SP.J.1095.2010.00147
作者姓名:田鹏  高保娇  张妍妍
作者单位:(中北大学化学工程系 太原 030051)
摘    要:以无致癌毒性的1,4-二氯甲氧基丁烷为氯甲基化试剂,先将交联聚苯乙烯(CPS)微球氯甲基化,制得氯甲基化微球CMCPS。 然后使微球CMCPS与4-吡啶甲醛进行季铵化反应,将4-吡啶甲醛键合到CPS微球表面,制得键合吡啶甲醛(PyAL)的改性微球PyAL-CPS。 考察了主要反应条件对季铵化反应的影响,最终确定季铵化反应的优化条件:溶剂CCl4,反应温度60 ℃,最后使改性微球PyAL-CPS、4-吡啶甲醛及吡咯在固-液界面上进行Adler反应,形成固载吡啶基卟啉(PyP)的微球PyP-CPS。 用IR和UV-Vis以及Zn2+配合物生成法表征了微球PyP-CPS的形成及负载量。

关 键 词:交联聚苯乙烯微球  吡啶甲醛  季铵化反应  吡啶基卟啉  固载  
收稿时间:2010-03-15
修稿时间:2010-06-05

Surface Chemical Modification of Crosslinked Polystyrene Microspheres and Immobilization of Pyridyl Porphyrins
TIAN Peng,GAO Bao-Jiao,ZHANG Yan-Yan. Surface Chemical Modification of Crosslinked Polystyrene Microspheres and Immobilization of Pyridyl Porphyrins[J]. Chinese Journal of Applied Chemistry, 2010, 27(12): 1376-1380. DOI: 10.3724/SP.J.1095.2010.00147
Authors:TIAN Peng  GAO Bao-Jiao  ZHANG Yan-Yan
Affiliation:(Department of Chemical Engineering,North University of China,Taiyuan 030051)
Abstract:Crosslinked polystyrene microspheres(CPS) were first chloromethylated with non carcinogenic 1,4-bis(chloromethoxy)butane(BCMB) to form chloromethylated microspheres(CMCPS). Then quaternization reaction between CMCPS microspheres and 4-pyridylaldehyde was carried out to modify the CPS microspheres with 4-pyridylaldehyde(PyAL-CPS). The effects of main factors on the quaternization reaction were examined, and the synthetic conditions were optimized. The suitable temperature and appropriate solvent are 60 ℃ and CCl4, respectively. Finally, Alder reaction at the interface of solid/solution between 4-pyridylaldehyde on the surface of modified microspheres and pyrrole was performed to form the functional microspheres(PyP-CPS), on which the formation of pyridyl porphyrin(PyP) could be achieved. The PyP-CPS formation were characterized by using IR and UV-Vis while and the loading of PyP was demonstrated by forming Zn-PyP complex.
Keywords:crosslinked polystyrene microsphere  pyridylaldehyde  quaternization reaction  pyridyl porphyrin  immobilization
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