首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Influence of Metal Ions on the Melting Temperature, Modulus, and Gelation Time of Gelatin Gels: Specific Ion Effects on Hydrogel Properties
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Influence of Metal Ions on the Melting Temperature, Modulus, and Gelation Time of Gelatin Gels: Specific Ion Effects on Hydrogel Properties

机译:金属离子对明胶凝胶熔融温度,模量和凝胶化时间的影响:水凝胶特异性离子效应

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摘要

The impact of ions on hydrogel strength is not well understood, in particular with regards to specific ion effects for cations. Herein, we find that divalent and monovalent cations in most cases reduce the modulus and melting temperature while increasing the gelation time of gelatin hydrogels. This behavior is in contrast to the well-known stiffening effect of trivalent metals. The melting temperature, the logarithm of the gelation time, and the logarithm of the amplitude of the complex modulus were found to follow a power law dependence on ionic strength: kI(x). The power law exponent, x, was found to be universal within the groups of monovalent and divalent cations. The prefactor k depended linearly on the ionic radius, which was used as a proxy for ion polarizability. The slope of this linear dependence was different for monovalent and divalent cations.
机译:离子对水凝胶强度的影响尤其不太理解,特别是关于阳离子的特定离子效应。 在此,我们发现二数和单价阳离子在大多数情况下降低模量和熔化温度,同时增加明胶水凝胶的凝胶化时间。 这种行为与三价金属的众所周知的加强效果形成鲜明对比。 发现熔化温度,凝胶化时间的对数,以及复杂模量的幅度的对数遵循电力法对离子强度的依赖性:Ki(x)。 在一年级和二价阳离子的群体中发现幂X普遍是普遍的权力法。 阀k线性地依赖于离子半径,该离子半径用作离子极化性的代理。 对于一价和二价阳离子,这种线性依赖性的斜率不同。

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