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Molecular Flexibility of Methylcelluloses of Differing Degree of Substitution by Combined Sedimentation and Viscosity Analysis

机译:沉降与黏度相结合的不同取代度甲基纤维素的分子柔性

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摘要

The flexibility/rigidity of methylcelluloses (MCs) plays an important part in their structure-function relationship and therefore on their commercial applications in the food and biomedical industries. In the present study, two MCs of low degree of substitution (DS) 1.09 and 1.32 and four of high DS (1.80, 1.86, 1.88 and 1.93) were characterised in distilled water in terms of intrinsic viscosity [eta]; sedimentation coefficient (s(20,W)(0)) and weight average molar mass ((M) over barw). Solution conformation and flexibility were estimated qualitatively using conformation zoning and quantitatively (persistence length L-p) using the new combined global method. Sedimentation conformation zoning showed an extended coil (Type C) conformation and the global method applied to each MC sample yielded persistence lengths all within the range L-p = 12-17 nm (for a fixed mass per unit length) with no evidence of any significant change in flexibility with DS.
机译:甲基纤维素(MCs)的柔韧性/刚性在它们的结构-功能关系中,因此在其在食品和生物医学行业的商业应用中起着重要的作用。在本研究中,根据特性粘度η,在蒸馏水中表征了两个低取代度(DS)1.09和1.32的MC和四个高DS(1.80、1.86、1.88和1.93)的MC。沉降系数(s(20,W)(0))和重均摩尔质量((M)超过皮重)。使用构象分区定性评估解决方案构象和灵活性,并使用新的组合全局方法定量评估(持久性长度L-p)。沉积物构象分区显示出扩展的线圈(C型)构象,应用于每个MC样品的整体方法产生的持久长度全部在Lp = 12-17 nm范围内(对于每单位长度的固定质量),没有任何明显变化的迹象DS的灵活性。

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