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利用激光散射方法对应用于生命科学的纤维素基材料进行研究。

Investigation of Cellulose-Based Materials Applied in Life Sciences Using Laser Light Scattering Methods.

作者信息

Grigoras Anca-Giorgiana

机构信息

"Petru Poni" Institute of Macromolecular Chemistry, Grigore Ghica Voda Alley, 41A, 700487 Iasi, Romania.

出版信息

Polymers (Basel). 2024 Apr 21;16(8):1170. doi: 10.3390/polym16081170.

Abstract

This review emphasizes the practical importance of laser light scattering methods for characterizing cellulose and its derivatives. The physicochemical parameters like molecular weights, the radius of gyration, hydrodynamic radius, and conformation will be considered when the reproducibility of polymer behavior in solution is necessary for the subsequent optimization of the property profile of a designed product. Since there are various sources of cellulose, and the methods of cellulose extraction and chemical modification have variable yields, materials with variable molecular weights, and size polydispersity will often result. Later, the molecular masses will influence other physicochemical properties of cellulosic materials, both in solution and solid state. Consequently, the most rigorous determination of these quantities is imperative. In this regard, the following are presented and discussed in this review: the theoretical foundations of the light scattering phenomenon, the evolution of the specific instrumentation and detectors, the development of the detector-coupling techniques which include a light scattering detector, and finally, the importance of the specific parameters of polymers in solution, resulting from the data analysis of light scattering signals. All these aspects are summarized according to the chemical classification of the materials: celluloses, esters of cellulose, co-esters of cellulose, alkyl esters of cellulose, ethers of cellulose, and other heterogeneous cellulose derivatives with applications in life sciences.

摘要

本综述强调了激光光散射方法在表征纤维素及其衍生物方面的实际重要性。当聚合物在溶液中的行为重现性对于后续优化设计产品的性能至关重要时,将考虑诸如分子量、回转半径、流体动力学半径和构象等物理化学参数。由于纤维素有多种来源,且纤维素提取和化学改性方法的产率各不相同,因此通常会得到分子量可变且尺寸多分散的材料。随后,分子量将影响纤维素材料在溶液和固态下的其他物理化学性质。因此,必须对这些量进行最精确的测定。在这方面,本综述将介绍并讨论以下内容:光散射现象的理论基础、特定仪器和探测器的发展、包括光散射探测器在内的探测器耦合技术的发展,以及最后,由光散射信号数据分析得出的聚合物在溶液中特定参数的重要性。所有这些方面都根据材料的化学分类进行了总结:纤维素、纤维素酯、纤维素共酯、纤维素烷基酯、纤维素醚,以及在生命科学中有应用的其他非均相纤维素衍生物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bbbf/11054383/c4aa387ebdf9/polymers-16-01170-g001.jpg

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