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明胶水溶液中酒精驱动的凝聚转变的自由能景观

Free-energy landscape of alcohol driven coacervation transition in aqueous gelatin solutions.

作者信息

Reena Amarnath Gupta, Bohidar H B

机构信息

Polymer and Biophysics Laboratory, School of Physical Sciences, Jawaharlal Nehru University, New Delhi 110067, India.

出版信息

J Chem Phys. 2006 Aug 7;125(5):054904. doi: 10.1063/1.2219745.

Abstract

Liquid-liquid phase separation of a homogeneous polyampholyte (gelatin) solution into a dense polymer-rich coacervate and the dilute supernatant phase is discussed through free-energy landscape formalism. We have evaluated the free energy and entropy of the system as it undergoes the phenomenon of simple coacervation, driven by the addition of a nonsolvent. Electrophoretic mobility (mu) and turbidity measurements were performed on 0.01% and 0.05% (w/v) aqueous gelatin solutions that were driven towards coacervation by the addition of ethanol. The mobility of the polyampholyte molecules, which was typically mu approximately 0.38+/-0.02 microm/s cm/V in water, gradually reduced for the soluble intermolecular complexes to a plateau value of mu approximately 0.11+/-0.01 microm/s cm/V as the ethanol volume fraction equaled phi(ns) approximately 0.47+/-0.03, which coincided with the first appearance of coacervate droplets (coacervation transition) observed from turbidity measurements, a behavior found to be invariant of gelatin concentration. These results were used as input to the theoretical model to explicitly construct the free-energy landscape for a single gelatin chain and the global system comprising the polymer-rich coacervate and the dilute supernatant phase.

摘要

通过自由能景观形式理论,讨论了均相聚两性电解质(明胶)溶液液-液相分离为富含聚合物的致密凝聚层和稀上清液相的过程。我们评估了在添加非溶剂驱动下系统发生简单凝聚现象时的自由能和熵。对0.01%和0.05%(w/v)的明胶水溶液进行了电泳迁移率(μ)和浊度测量,通过添加乙醇使其趋向于凝聚。聚两性电解质分子在水中的迁移率通常约为μ≈0.38±0.02微米/秒·厘米/伏,随着乙醇体积分数等于φ(ns)≈0.47±0.03,可溶性分子间复合物的迁移率逐渐降低至平台值μ≈0.11±0.01微米/秒·厘米/伏,这与从浊度测量中观察到的凝聚层液滴首次出现(凝聚转变)相吻合,发现该行为与明胶浓度无关。这些结果被用作理论模型的输入,以明确构建单个明胶链以及包含富含聚合物的凝聚层和稀上清液相的全局系统的自由能景观。

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