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AN ATOMIC FORCE MICROSCOPY STUDY ON THE AGGREGATION OF ISOTACTIC POLY(METHYL METHACRYLATE)
引用本文:Jing Liu,Ji-jun Wang,Ting Li,Yong Zhou,De-yan Shen,Yun Huang and Shou-ke Yan State Key Laboratory of Polymer Physics and Chemistry,Institute of Chemistry,The Chinese Academy of Sciences,Beijing 100080,China Physics Department,Peking University,Beijing 100080,China. AN ATOMIC FORCE MICROSCOPY STUDY ON THE AGGREGATION OF ISOTACTIC POLY(METHYL METHACRYLATE)[J]. 高分子科学, 2007, 0(2): 207-215
作者姓名:Jing Liu  Ji-jun Wang  Ting Li  Yong Zhou  De-yan Shen  Yun Huang and Shou-ke Yan State Key Laboratory of Polymer Physics and Chemistry  Institute of Chemistry  The Chinese Academy of Sciences  Beijing 100080  China Physics Department  Peking University  Beijing 100080  China
作者单位:Jing Liu,Ji-jun Wang,Ting Li,Yong Zhou,De-yan Shen,Yun Huang and Shou-ke Yan State Key Laboratory of Polymer Physics and Chemistry,Institute of Chemistry,The Chinese Academy of Sciences,Beijing 100080,China Physics Department,Peking University,Beijing 100080,China
摘    要:Aggregation process of isotactic poly(methyl methacrylate) (i-PMMA) has been studied extensively for many years, and considerable progress has been made in both experimental and theoretical studies. They are, however, seldom sustained by real-space observations of the underlying morphology. In this paper, the aggregation process of i-PMMA in concentrated acetone solutions and the fractal structure of the resulting three-dimensional clusters were characterized on the basis of real-space AFM observations of their two-dimensional projection. It was found that spherical multiple-chain particles formed upon collapse and aggregation of the involving chains as a whole during quenching the solution to room temperature. By keeping the solution at room temperature, the initially formed particles stick together upon contact to form larger particles through reassembling very slowly. The succeeding collision of the enlarged spherical particles leads to the formation of small clusters. These newly formed small clusters grow when they meet with other clusters or single Brownian particles. This leads to the formation of large clusters with fractal dimension of 1.95$±0.05, which suggest a reaction-limited cluster aggregation of i-PMMA in a concentrated acetone solution. This is in accordance with the conclusion obtained by light scattering measurements.

关 键 词:全同聚合物 聚甲基丙烯酸酯 聚集作用 原子力显微镜
收稿时间:2006-08-08
修稿时间:2006-10-23

AN ATOMIC FORCE MICROSCOPY STUDY ON THE AGGREGATION OF ISOTACTIC POLY(METHYL METHACRYLATE)
Jing Liu,Ji-jun Wang,Ting Li,Yong Zhou,De-yan Shen,Yun Huang,Shou-ke Yana. AN ATOMIC FORCE MICROSCOPY STUDY ON THE AGGREGATION OF ISOTACTIC POLY(METHYL METHACRYLATE)[J]. Chinese Journal of Polymer Science, 2007, 0(2): 207-215
Authors:Jing Liu  Ji-jun Wang  Ting Li  Yong Zhou  De-yan Shen  Yun Huang  Shou-ke Yana
Affiliation:State Key Laboratory of Polymer Physics and Chemistry, Institute of Chemistry, The Chinese Academy of Sciences, Beijing 100080, China Physics Department, Peking University, Beijing 100080, China
Abstract:Aggregation process of isotactic poly(methyl methacrylate)(i-PMMA)has been studied extensively for many years,and considerable progress has been made in both experimental and theoretical studies.Thev are,however,seldom sustained by real-space observations of the underlying morphology.In this paper,the aggregation process of i-PMMA in concentrated acetone solutions and the fractal structure of the resulting three-dimensional clusters were characterized on the basis of real-space AFM observations of their two-dimensional projection.It was found that spherical multiple-chain particles formed upon collapse and aggregation of the involving chains as a whole during quenching the solution to room temperature.By keeping the solution at room temperature,the initially formed particles stick together upon contact to form larger particles through reassembling very slowly.The succeeding collision of the enlarged spherical particles leads to the formation of small clusters.These newly formed small clusters grow when they meet with other clusters or single Brownian particles.This leads to the formation of large clusters with fractal dimension of 1.95±0.05.which suggest a reaction-limited cluster aggregation of i-PMMA in a concentrated acetone solution.This is in accordance with the conclusion obtained by light scattering measurements.
Keywords:Isotactic poly(methyl methacrylate)  Aggregation  Fractal dimension  Atomic force microscopy
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