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Effect of gelatin on molecular mobility in amorphous sucrose detected by erythrosin B phosphorescence

机译:明胶对赤藓红B磷光检测无定形蔗糖分子迁移的影响

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We have used phosphorescence from the triplet probe erythrosin B (Ery B) to evaluate the effect of gelatin on the molecular mobility of the amorphous sucrose matrix as a function of temperature. Ery B was dispersed in amorphous sucrose and sucrose-gelatin films at ratios of similar to 1:10(4) (probe/sucrose), and delayed emission spectra and emission decay transients were measured over the temperature range from 5 to 100 degrees C. Analysis of spectra using a lognormal function provided the peak energy and bandwidth of the emission. The emission peak frequency decreased at low (0.00022-0.0007) gelatin concentrations and increased at high (above 0,0022) gelatin concentrations, indicating that gelatin increased the extent, and thus the rate, of dipolar relaxation at low gelatin content and decreased the extent at higher gelatin content. Decay transients were well fit to a stretched exponential function at all gelatin contents and temperatures. Analysis of the emission lifetimes provided a measure of the rate of non-radiative decay to the ground state, an indicator of matrix molecular mobility. This rate increased at low (0.00022-0.0022) and decreased at high (>0.0073) gelatin wt ratios. Analysis of the effect of gelatin on the emission bandwidth, the stretching exponent beta, and the variation of lifetime across the emission band indicated that matrix dynamic site heterogeneity increased at low and decreased at high gelatin wt ratios. These results provide a novel insight into the complex dynamic effects of the gelatin polymer on the molecular mobility of the amorphous sucrose matrix. (C) 2008 Elsevier Ltd. All rights reserved.
机译:我们已经使用来自三重态探针赤藓红B(Ery B)的磷光来评估明胶对无定型蔗糖基质分子迁移率随温度的影响。 Ery B以类似于1:10(4)(探针/蔗糖)的比例分散在无定形蔗糖和蔗糖-明胶薄膜中,并在5至100摄氏度的温度范围内测量了延迟发射光谱和发射衰减瞬变。使用对数正态函数的光谱分析提供了发射的峰值能量和带宽。在低(0.00022-0.0007)明胶浓度下,发射峰频率降低,而在高(0.0022以上)明胶浓度下,发射峰频率增加,表明明胶在低明胶含量下增加了偶极弛豫的程度,从而降低了偶极弛豫的速率,并降低了程度。明胶含量较高。在所有明胶含量和温度下,衰变瞬变都非常适合拉伸指数函数。发射寿命的分析提供了非辐射衰变至基态速率的度量,基态是基质分子迁移率的指标。该比率在低(0.00022-0.0022)时增加,而在高(> 0.0073)明胶重量比时降低。明胶对发射带宽,拉伸指数β和整个发射带寿命变化的影响分析表明,基质动态位点异质性在低明胶重量比下增加而在低明胶重量比下降低。这些结果为明胶聚合物对无定型蔗糖基质分子迁移的复杂动力学效应提供了新颖的见解。 (C)2008 Elsevier Ltd.保留所有权利。

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