Bohidar H B
School of Physical Sciences, Jawaharlal Nehru University, New Delhi, India.
Int J Biol Macromol. 1998 Jul;23(1):1-6. doi: 10.1016/s0141-8130(98)00003-8.
Aggregation properties of Gelatin chains in neutral aqueous solutions, are reported in the temperature range T = 35-60 degrees C, from the measured intrinsic viscosity [eta], diffusion coefficient, D(o), molecular weight Mw, and radius of gyration (Rg) data. Gelatin chains doubled their size as the solution was cooled to 35 degrees C from 60 degrees C. The intermolecular interaction was found to be repulsive which showed significant decrease as the temperature was reduced. The data provides excellent fitting to the scaling relations Mw[eta] = (1.96 +/- 0.06) x 10(-26)(Re,eta/Re,D)3(D(o) eta o/T)-3 and (D(o)n1/2)-1 approximately equal to (6 1/2 pie eta o chi beta/kB/T)[1 + 0.201(v/beta 3)n1/2] where n is the number of segments in the chain. The ratio of the hydrodynamic radius (Re,D) (deduced from D(o)) and Rg, (Re,D/Rg = zeta) was found to be 0.555. From the known solvent viscosity eta o, the segment length beta, was deduced to be (15 +/- 2) A. The deduced excluded volume was v approximately equal to (4.1 A)3. The Flory-Huggins interaction parameter (zeta) did not show observable temperature dependence.
本文报道了在温度范围T = 35 - 60℃下,通过测量特性粘度[η]、扩散系数D₀、分子量Mw和回转半径(Rg)数据,得到的明胶链在中性水溶液中的聚集性质。当溶液从60℃冷却到35℃时,明胶链的尺寸增大了一倍。发现分子间相互作用是排斥性的,并且随着温度降低显著减小。这些数据与标度关系Mw[η] = (1.96 ± 0.06) x 10⁻²⁶(Re,η/Re,D)³(D₀η₀/T)⁻³以及(D₀n¹/²)⁻¹ ≈ (6¹/²πη₀χβ/kB/T)[1 + 0.201(v/β³)n¹/²]具有很好的拟合,其中n是链中的链段数。由D₀推导出的流体动力学半径(Re,D)与Rg的比值(Re,D/Rg = ζ)为0.555。根据已知的溶剂粘度η₀,推导出链段长度β为(15 ± 2) Å。推导出的排除体积v ≈ (4.1 Å)³。弗洛里 - 哈金斯相互作用参数(ζ)没有显示出明显的温度依赖性。