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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Continuous self-avoiding walk with application to the description of polymer chains
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Continuous self-avoiding walk with application to the description of polymer chains

机译:连续自我规避行走在聚合物链描述中的应用

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We develop the continuous self-avoiding walk (CSAW) methodology for investigating temperature dependent thermodynamic properties of finite polymer chains without imposing a lattice. This leads to a new concept: the free energy theta temperature, T-theta F, at which the free energy is proportional to chain length. Above T-theta F, the polymer chain-solvent mixture leads to a single phase, whereas below T-theta F the polymer solvent system has a positive surface tension with a tendency to phase separation to form a globular phase. For finite chains this coil-globule transition lies above the geometric theta temperature at which the distribution describes a Gaussian coil. CSAW provides the basis for a new approach to predict globular properties of real polymers.
机译:我们开发了连续自我规避行走(CSAW)方法,用于研究有限的聚合物链的温度依赖性热力学性质,而不施加晶格。这导致了一个新概念:自由能θ温度T-theta F,在该温度下自由能与链长成正比。高于T-θF,聚合物链-溶剂混合物导致单相,而低于T-theta F,聚合物溶剂系统具有正表面张力,具有相分离形成球状相的趋势。对于有限链,该线圈-小球过渡位于几何θ温度以上,在该温度下,分布描述为高斯线圈。 CSAW为预测真实聚合物球状特性的新方法提供了基础。

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