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吸附在生物材料上的弱酸的激发态质子转移:质子转移至壳聚糖的氨基葡萄糖上。

Excited-state proton transfer of weak photoacids adsorbed on biomaterials: proton transfer to glucosamine of chitosan.

作者信息

Simkovitch Ron, Huppert Dan

机构信息

Raymond and Beverly Sackler Faculty of Exact Sciences, School of Chemistry, Tel Aviv University , Tel Aviv 69978, Israel.

出版信息

J Phys Chem A. 2015 Jan 29;119(4):641-51. doi: 10.1021/jp511349j. Epub 2015 Jan 16.

Abstract

UV-vis steady-state and time-resolved techniques were employed to study the excited-state proton-transfer process from two weak photoacids positioned next to the surface of chitosan and cellulose. Both chitosan and cellulose are linear polysaccharides; chitosan is composed mainly of d-glucosamine units. In order to overcome the problem of the high basicity of the glucosamine, we chose 2-naphthol (pKa* ≈ 2.7) and 2-naphthol-6-sulfonate (pKa* ≈ 1.7) as the proton emitters because of their ground state pKa (≈9). Next to the 1:1 cellulose:water weight ratio, the ESPT rate of these photoacids is comparable to that of bulk water. We found that the ESPT rate of 2-naphthol (2NP) and 2-naphthol-6-sulfonate (2N6S) next to chitosan in water (1:1) weight ratio samples is higher than in bulk water by a factor of about 5 and 2, respectively. We also found an efficient ESPT process that takes place from these photoacids in the methanol environment next to the chitosan scaffold, whereas ESPT is not observed in methanolic bulk solutions of these photoacids. We therefore conclude that ESPT occurs from these photoacids to the d-glucosamine units that make up chitosan.

摘要

采用紫外可见稳态和时间分辨技术研究了壳聚糖和纤维素表面附近两种弱光酸的激发态质子转移过程。壳聚糖和纤维素都是线性多糖;壳聚糖主要由D-葡萄糖胺单元组成。为了克服葡萄糖胺碱性过高的问题,我们选择2-萘酚(pKa*≈2.7)和2-萘酚-6-磺酸盐(pKa*≈1.7)作为质子发射体,因为它们的基态pKa(≈9)。在纤维素与水的重量比为1:1时,这些光酸的激发态质子转移速率与本体水相当。我们发现,在水(1:1)重量比样品中,壳聚糖附近的2-萘酚(2NP)和2-萘酚-6-磺酸盐(2N6S)的激发态质子转移速率分别比本体水高约5倍和2倍。我们还发现,在壳聚糖支架附近的甲醇环境中,这些光酸会发生高效的激发态质子转移过程,而在这些光酸的甲醇本体溶液中未观察到激发态质子转移。因此,我们得出结论,激发态质子转移是从这些光酸发生到构成壳聚糖的D-葡萄糖胺单元上。

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