Terech P, Dourdain S, Maitra U, Bhat S
CEA-Grenoble, INAC-SPrAM (UMR5819)-LASSO, 17, rue des Martyrs, 38054 Grenoble Cedex 9, France.
J Phys Chem B. 2009 Apr 9;113(14):4619-30. doi: 10.1021/jp809336g.
Quinuclidine grafted cationic bile salts are forming salted hydrogels. An extensive investigation of the effect of the electrolyte and counterions on the gelation has been envisaged. The special interest of the quinuclidine grafted bile salt is due to its broader experimental range of gelation to study the effect of electrolyte. Rheological features of the hydrogels are typical of enthalpic networks exhibiting a scaling law of the elastic shear modulus with the concentration (scaling exponent 2.2) modeling cellular solids in which the bending modulus is the dominant parameter. The addition of monovalent salt (NaCl) favors the formation of gels in a first range (0.00117 g cm(-3) (0.02 M) < T(NaCl) < 0.04675 g cm(-3) (0.8 M)). At larger salt concentrations, the gels become more heterogeneous with nodal zones in the micron scale. Small-angle neutron scattering experiments have been used to characterize the rigid fibers (
奎宁环接枝的阳离子胆盐正在形成盐化水凝胶。人们设想对电解质和抗衡离子对凝胶化的影响进行广泛研究。奎宁环接枝胆盐的特殊之处在于其更广泛的凝胶化实验范围,以便研究电解质的影响。水凝胶的流变学特征是焓网络的典型特征,表现出弹性剪切模量与浓度的标度律(标度指数为2.2),模拟了以弯曲模量为主要参数的细胞固体。添加单价盐(NaCl)在第一个范围内(0.00117 g cm⁻³(0.02 M)< T(NaCl) < 0.04675 g cm⁻³(0.8 M))有利于凝胶的形成。在更高的盐浓度下,凝胶变得更加不均匀,出现微米级的节点区域。小角中子散射实验已用于表征刚性纤维(