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氘化对细菌纤维素结构的影响。

The effect of deuteration on the structure of bacterial cellulose.

机构信息

Institute of Paper Science and Technology, School of Chemistry and Biochemistry, Georgia Institute of Technology, Atlanta, GA 30332-0620, United States.

出版信息

Carbohydr Res. 2013 Jun 7;374:82-8. doi: 10.1016/j.carres.2013.04.009. Epub 2013 Apr 18.

Abstract

In vivo generated deuterated bacterial cellulose, cultivated from 100% deuterated glycerol in D2O medium, was analyzed for deuterium incorporation by ionic liquid dissolution and (2)H and (1)H nuclear magnetic resonance (NMR). A solution NMR method of the dissolved cellulose was used to determine that this bacterial cellulose had 85% deuterium incorporation. Acetylation and (1)H and (2)H NMR of deuterated bacterial cellulose indicated near equal deuteration at all sites of the glucopyranosyl ring except C-6 which was partly deuterated. Despite the high level of deuterium incorporation no significant differences in the molecular and morphological properties were observed for the deuterated and protio bacterial cellulose samples. The highly deuterated bacterial cellulose presented here can be used as a model substrate for studying cellulose biopolymer properties via future small angle neutron scattering (SANS) studies.

摘要

体内生成的、由 100%氘代甘油在 D2O 介质中培养的氘代细菌纤维素,通过离子液体溶解和 (2)H 和 (1)H 核磁共振 (NMR) 分析其氘掺入情况。溶解纤维素的溶液 NMR 方法用于确定这种细菌纤维素的氘掺入率为 85%。氘代细菌纤维素的乙酰化和 (1)H 和 (2)H NMR 表明,除 C-6 位部分氘代外,葡萄糖吡喃环的所有位点的氘代程度几乎相等。尽管氘掺入水平很高,但氘代和原代细菌纤维素样品的分子和形态特性没有明显差异。本文所介绍的高度氘代细菌纤维素可用作通过未来小角中子散射 (SANS) 研究研究纤维素生物聚合物特性的模型底物。

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