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FTIR spectroscopic evaluation of sucrose-maltodextrin-sodium citrate bioglass

机译:蔗糖-麦芽糊精-柠檬酸钠生物玻璃的FTIR光谱分析

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A model bioglass system was composed with sucrose (SC), maltodextrin (MD), and sodium citrate (NaCit). Samples were prepared with different SC/MD ratios (7:3, 5:5 and 3:7, by mass) and NaCit/SC ratios (0, 0.1 and 0.2, by mole) at low (0.27-0.49 %wb) and high (2.83-4.4 %wb) levels of moisture content. The effects of system constituents were investigated using the Fourier transform infrared (FTIR) spectroscopy. Hydrogen bonding interactions analyzed by studying the OH-stretching absorption band in the FTIR spectra indicated that there was no noticeable effect of moisture on the bioglass. The matrix of the system with high concentration of MD was loosely packed. NaCit interacted with both SC and MD through carboxylic groups, as evidenced by the shifting of antisymmetric (v(as)(COO-) and symmetric (v(s)(COO-)) stretching bands of carboxyl groups. However, NaCit tended to interact more strongly with SC rather than with MD as evidenced by the strongest hydrogen-bonded network observed in the system with highest concentrations of SC (i.e., SC/MD = 7:3) and NaCit (i.e., NaCit/SC = 0.2). (C) 2017 Elsevier Ltd. All rights reserved.
机译:由蔗糖(SC),麦芽糊精(MD)和柠檬酸钠(NaCit)组成的生物玻璃模型系统。在低(0.27-0.49%wb)和低(0.27-0.49%wb)的条件下以不同的SC / MD比(质量比为7:3、5:5和3:7)和NaCit / SC比(摩尔比为0、0.1和0.2)制备样品高(2.83-4.4%wb)的水分含量。使用傅立叶变换红外(FTIR)光谱研究了系统组成的影响。通过研究FTIR光谱中的OH拉伸吸收带分析的氢键相互作用表明,水分对生物玻璃没有明显影响。 MD浓度高的系统基质散装。 NaCit通过羧基与SC和MD相互作用,这可以通过羧基的反对称(v(as)(COO-)和对称(v(s)(COO-))拉伸带的移动来证明。系统中观察到的最强的氢键网络(具有最高浓度的SC(即SC / MD = 7:3)和NaCit(即NaCit / SC = 0.2))证明,与SC的相互作用比与MD的相互作用更强。 (C)2017 Elsevier Ltd.保留所有权利。

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