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通过光散射、小角中子散射和流变学研究琼脂-明胶共水凝胶的内部结构

Internal structures of agar-gelatin co-hydrogels by light scattering, small-angle neutron scattering and rheology.

作者信息

Santinath Singh S, Aswal V K, Bohidar H B

机构信息

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

出版信息

Eur Phys J E Soft Matter. 2011 Jun;34(6):62. doi: 10.1140/epje/i2011-11062-3. Epub 2011 Jun 27.

Abstract

Internal structures of agar-gelatin co-hydrogels were investigated as a function of their volumetric mixing ratio, [Formula: see text] , 1.0 and 2.0 using dynamic light scattering (DLS), small-angle neutron scattering (SANS) and rheology. The degree of non-ergodicity ( X = 0.2 ± 0.02) , which was extracted as a heterodyne contribution from the measured dynamic structure factor data remained less than that of homogeneous solutions where ergodicity is expected (X = 10. The static structure factor, I(q) , results obtained from SANS were interpreted in the Guinier regime (low-q , which implied the existence of ≈ 250 nm long rod-like structures (double-helix bundles), and the power law (intermediate-q regions) yielded I (q) ~ q(−α) with α = 2.3 , 1.8 and 1.6 for r = 0.5 , 1.0 and 2.0. This is indicative of the presence of Gaussian chains at low r , while at r = 2 there was a propensity of rod-shaped structures. The gel strength and transition temperatures measured from frequency sweep and temperature ramp studies were suggestive of the presence of a stronger association between the two biopolymer networks at higher r . The results indicate that the internal structures of agar-gelatin co-hydrogels were highly dependent on the volumetric mixing ratio.

摘要

利用动态光散射(DLS)、小角中子散射(SANS)和流变学,研究了琼脂 - 明胶共水凝胶的内部结构与其体积混合比([公式:见正文])、1.0和2.0之间的关系。从测量的动态结构因子数据中提取的非遍历性程度(X = 0.2 ± 0.02),作为外差贡献,仍低于预期具有遍历性的均匀溶液(X = 10)。从SANS获得的静态结构因子I(q)结果在吉尼尔区域(低q)进行了解释,这意味着存在约250 nm长的棒状结构(双螺旋束),并且幂律(中间q区域)得到I(q) ~ q(−α),其中对于r = 0.5、1.0和2.0,α分别为2.3、1.8和1.6。这表明在低r时存在高斯链,而在r = 2时存在棒状结构的倾向。从频率扫描和温度斜坡研究中测量的凝胶强度和转变温度表明,在较高r时,两种生物聚合物网络之间存在更强的缔合。结果表明,琼脂 - 明胶共水凝胶的内部结构高度依赖于体积混合比。

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