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改性天然源聚合物中取代基效应的研究:通过合理的侧链工程控制产率、设计及性能

Investigation of Substituent Effect in Modified Nature-Sourced Polymers: Rational Side Chain Engineering to Control Yield, Design, and Properties.

作者信息

Rutenberg Roi, Golden Gilad, Cohen Yael, Kleiman Maya, Poverenov Elena

机构信息

Postharvest and Food Science Institute and Plant Science Institute, Agricultural Research Organization, The Volcani Center, Rishon LeZion 50250, Israel.

Institute of Biochemistry, Food Science and Nutrition, Faculty of Agriculture, Food and Environment and Environmental Studies and Agricultural Resources, Faculty of Agriculture, Food and Environment, The Hebrew University of Jerusalem, Rehovot 76100, Israel.

出版信息

ACS Omega. 2018 Oct 9;3(10):12841-12850. doi: 10.1021/acsomega.8b01709. eCollection 2018 Oct 31.

Abstract

"Side chain engineering" research has yielded many promising and beneficial results, with applications in various fields. However, this research did not receive sufficient focus when nature-sourced polymers are concerned. In this study, we have performed side chain engineering on chitosan, a nature-sourced polysaccharide, by coupling it with a number of aliphatic aldehydes of varying chain lengths. The side chains' length and the pursuing effect on the modified products' properties were studied in great detail. In terms of coupling yields, it was found that some substituents have displayed more favorable results than others by a factor of over 35 times. When studying the modified polymers' physical and mechanical properties, some of them were found to exhibit more rigid mechanical properties by a factor of 3.5 times than others. The effect was also expressed through self-assembly concentrations and encapsulation capabilities of the modified polymers. Remarkably, the combined experimental and calculated kinetic studies showed the results do not necessarily follow a linear progression relating to substituent chain length, but rather a parabolic pattern with a specific extremum point. This study has assisted in shedding light on the inspected phenomenon, explaining that not only steric and electronic factors but also interfacial solubility related factors govern the coupling reaction and the resulting modified polymers' properties. As chemical protocols in various academic, clinical, and industrial studies around the world slowly shift their norms toward finding safer ways for the production of novel materials and technologies, nature-sourced polymers hold great promise as virtually inexhaustible raw materials. The perfection of their chemical modification is therefore relevant now more than ever, with far-reaching and diverse applicative prospects.

摘要

“侧链工程”研究已取得许多有前景且有益的成果,并在各个领域得到应用。然而,当涉及天然来源的聚合物时,这项研究并未得到足够的关注。在本研究中,我们通过将壳聚糖(一种天然来源的多糖)与多种不同链长的脂肪醛偶联,对其进行了侧链工程。详细研究了侧链长度及其对改性产物性能的影响。在偶联产率方面,发现一些取代基的效果比其他取代基高出35倍以上。在研究改性聚合物的物理和机械性能时,发现其中一些聚合物的机械性能比其他聚合物高出3.5倍,表现出更高的刚性。这种效果还通过改性聚合物的自组装浓度和包封能力体现出来。值得注意的是,综合实验和计算动力学研究表明,结果不一定遵循与取代基链长相关的线性进展,而是呈现出具有特定极值点的抛物线模式。这项研究有助于阐明所研究的现象,解释了不仅空间和电子因素,而且界面溶解性相关因素也支配着偶联反应以及所得改性聚合物的性能。随着世界各地各种学术、临床和工业研究中的化学方案逐渐将规范转向寻找生产新型材料和技术的更安全方法,天然来源的聚合物作为几乎取之不尽的原材料具有巨大潜力。因此,其化学改性的完善现在比以往任何时候都更加重要,具有深远而多样的应用前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/501e/6644356/03b8eb7c6ded/ao-2018-01709q_0004.jpg

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