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Non-exchanging hydroxyl groups on the surface of cellulose fibrils: The role of interaction with water

机译:纤维素原纤维表面上不可交换的羟基:与水相互作用的作用

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The interaction of water with cellulose stages many unresolved questions. Here H-2 MAS NMR and IR spectra recorded under carefully selected conditions in H-1-H-2 exchanged, and re-exchanged, cellulose samples are presented. It is shown here, by a quantitative and robust approach, that only two of the three available hydroxyl groups on the surface of cellulose fibrils are exchanging their hydrogen with the surrounding water molecules. This finding is additionally verified and explained by MD simulations which demonstrate that the (HO)-H-1(2) and (HO)-H-1(6) hydroxyl groups of the constituting glucose units act as hydrogen-bond donors to water, while the (HO)-H-1(3) groups behave exclusively as hydrogen-bond acceptors from water and donate hydrogen to their intra-chain neighbors O(5). We conclude that such a behavior makes the latter hydroxyl group unreactive to hydrogen exchange with water. (C) 2016 Elsevier Ltd. All rights reserved.
机译:水与纤维素的相互作用使许多问题尚未解决。此处介绍了在精心选择的条件下,在H-1-H-2交换和重新交换的纤维素样品中记录的H-2 MAS NMR和IR光谱。在此通过定量和稳健的方法表明,纤维素原纤维表面上三个可用羟基中只有两个与周围的水分子交换氢。 MD模拟进一步验证和解释了这一发现,该模拟表明构成葡萄糖单元的(HO)-H-1(2)和(HO)-H-1(6)羟基充当水的氢键供体,而(HO)-H-1(3)基团仅充当水的氢键受体,并向其链内邻居O(5)捐赠氢。我们得出的结论是,这种行为使后者的羟基对与水进行氢交换没有反应。 (C)2016 Elsevier Ltd.保留所有权利。

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