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通过选择性高碘酸钠氧化改性二醛壳聚糖的简单途径制备三羧酸壳聚糖纳米晶体。

Facile route to tri-carboxyl chitin nanocrystals from di-aldehyde chitin modified by selective periodate oxidation.

机构信息

The Key Laboratory of Synthetic and Biological Colloids, Ministry of Education, School of Chemical and Material Engineering, Jiangnan University, 1800 Lihu Road, Wuxi 214122, China.

Jiangsu Co-Innovation Center of Efficient Processing and Utilization of Forest Resources, Jiangsu Key Lab of Biomass-Based Green Fuel and Chemicals, International Innovation Center for Forest Chemicals and Material, College of Chemical Engineering, Nanjing Forestry University, Nanjing 210037, China.

出版信息

Int J Biol Macromol. 2022 Jun 30;211:281-288. doi: 10.1016/j.ijbiomac.2022.04.217. Epub 2022 May 13.

Abstract

Chitin, a kind of polysaccharide mainly obtained from food waste, has emerged as an important biodegradable biopolymer in composite materials. The difficulty of aldehyde modification, which greatly limited the application of chitin nanocrystals, was addressed by applying a facile route of partial deacetylation followed by periodate oxidation in this study. Deacetylation occurred on the surface of both crystalline and amorphous regions, which were significantly degraded in the following periodate oxidation due to the inevitable cleavage of chitin chains, leading to an increase in the crystallinity index of obtained di-aldehyde chitin. The degree of deacetylation and periodate addition had limited improvement in the aldehyde content of di-aldehyde chitin with a maximum value of around 0.42 mmol/g. With further 2,2,6,6-tetramethylpiperidine-1-oxyl-mediated oxidation, the carboxyl content of tri-carboxyl chitin was improved to 1.58 mmol/g, which played a critical role in the dispersion efficiency and morphology of chitin nanocrystals. The obtained rod-like chitin nanocrystals with a ζ-potential value of -42 mV and an average size of 97 nm have potential application in dye-adsorption and emulsion stabilizers.

摘要

壳聚糖是一种主要从食物废物中提取的多糖,已成为复合材料中一种重要的可生物降解的生物聚合物。本研究通过应用部分脱乙酰化然后用过碘酸盐氧化的简便方法,解决了壳聚糖纳米晶体应用受到极大限制的醛基修饰的难题。脱乙酰化发生在结晶区和无定形区的表面,由于壳聚糖链的不可避免的断裂,随后的过碘酸盐氧化导致结晶度指数显著提高,得到的二醛壳聚糖。二醛壳聚糖的醛基含量受脱乙酰度和过碘酸盐用量的限制,最大值约为 0.42mmol/g。通过进一步用 2,2,6,6-四甲基哌啶-1-氧化物进行氧化,三羧基壳聚糖的羧基含量提高到 1.58mmol/g,这对壳聚糖纳米晶体的分散效率和形态起着关键作用。得到的棒状壳聚糖纳米晶体的 ζ 电位值为-42mV,平均粒径为 97nm,在染料吸附和乳液稳定剂方面具有潜在的应用。

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