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Quartz Crystal Microbalance Studies of Polymer Gels and Solutions in Liquid Environments

机译:液体环境中聚合物凝胶和溶液的石英微平衡研究

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Spreading of liquids and soft solids on a rigid surface in a surrounding liquid medium is investigated by utilizing the lateral sensitivity of the quartz crystal microbalance (QCM). While the QCM has been used extensively to study systems with spatial variations in the direction normal to the crystal's electrodes, few studies have exploited the QCM's ability to sense changes in loading in the plane of the electrodes. We propose equations to describe the predicted response of the QCM to a generalized viscoelastic material spreading at the QCM surface at the expense of the surrounding liquid medium. Several experimental examples are given in order to support the validity of the proposed equations, including situations where the spreading material is a Newtonian liquid, a viscoelastic liquid, or one of two viscoelastic solids. The first viscoelastic solid is a physically cross-linked gel based on a styrene/ethylene-butene/styrene triblock copolymer in mineral oil, and the second is a cross-linked poly(ethylene glycol) hydrogel.
机译:利用石英晶体微天平(QCM)的横向灵敏度,研究了液体和软固体在周围液体介质中的刚性表面上的扩散。虽然QCM已被广泛用于研究在垂直于晶体电极方向上具有空间变化的系统,但很少有研究利用QCM感知电极平面中负载变化的能力。我们提出方程式来描述QCM对广义粘弹性材料在QCM表面散布的预测响应,但以周围的液体介质为代价。为了证明所提出方程的有效性,给出了几个实验示例,包括铺展材料为牛顿液体,粘弹性液体或两种粘弹性固体之一的情况。第一种粘弹性固体是基于矿物油中的苯乙烯/乙烯-丁烯/苯乙烯三嵌段共聚物的物理交联的凝胶,第二种是交联的聚乙二醇水凝胶。

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