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2004 , 13: 1443-1459. [2] Schüth F, Schmidt W. Microporous and mesoporous materials[J]. Advanced Materials, 2002, 14(9): 629-638. [3] Corma A. State of the art and future challenges of zeolites as catalysts[J]. Journal of Catalysis, 2003, 216(1): 298-312. [4] Lu Y Q, Shi G Q, Li C, Liang Y Q. Thin polypyrrole films prepared by chemical oxidative polymerization[J]. Journal of Applied Polymer Science 1998,
70 (11): 2169-2172. [5] 曹伟民,周坤,张勇. 冷等离子体制备铝的氧化物膜[J].合成化学,1996,4(2):13-16. Double-π wall nanopores coordination polymer containing iodine chemical oxidative polymerization of pyrrole research Su Yan Abstract:In this paper,we use highly stable and highly structured double-π wall nanopores coordination polymer ,which has the characteristics of laoding a large number of iodine molecules and controlled release iodine molecules, as a nanometer reactor for oxidation polymerization of pyrrole aqueous solution. We studied under different reaction time, the chemical structure of a product in the liquid phase and crystal surface. Through infrared spectrum and X-ray photoelectron spectroscopy analysis,we found that reaction after
12 min under the condition of
5 oC low-temperature, polypyrrole already exist on the surface of crystal. With ammonia after proper treatment, the structure of polypyrrole changed into structure oxidation state and structure of proton state, but is given priority to with oxidation state structure. By mass spectrometry analysis,we found that the reaction liquid under the condition of different reaction time, in the solution are four polymers doped iodine found in large Numbers of pyrrole, which is consistent wiht the result of pyrrole solution oxide with the iodine powder.It shows that when iodine molecules from crystal channel released into the pyrrole in aqueous solution, pyrrole was quickly oxidative polymerization and formed the four polymers intermediates a lot. Keywords: Metal-Organic Framework;
Double-π Wall Nanoporours;
Iodine;
Chemical oxidative polymerization;
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