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Poly(amidoamine) Dendrimers as Nanoscale Diffusion Probes in Sol-Gel Films Investigated by Total Internal Reflection Fluorescence Spectroscopy

机译:全内反射荧光光谱法研究聚(酰胺基胺)树状聚合物作为溶胶-凝胶薄膜中的纳米级扩散探针

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摘要

Three generations of poly(amidoamine) dendrimers were dye-labeled and chemically modified to have terminal carboxyl groups and used as variably sized probes to study diffusion in thin sol-gel films. Total internal reflection fluorescence spectroscopy experiments, both correlation and concentration-jump measurements, were employed to measure the relative populations and effective diffusion coefficients of dendrimers in the films. For films prepared from small (27-nm) silica particles, larger dendrimers could be completely excluded from penetrating the solgel structure. In films made of larger (150-nm) particles with correspondingly larger pores, concentration-jump experiments showed that larger dendrimers are excluded from more of the intraparticle pore space than small dendrimers. Similarly, fluorescence-correlation measurements showed that the diffusion of smaller dendrimers exhibited greater tortuosity than larger dendrimers in the interparticle pores of the film. The smaller dendrimers explore a greater volume of smaller, more convoluted pores, whereas larger dendrimers penetrate a smaller volume of larger, more open pores.
机译:对三代聚(酰胺基胺)树状聚合物进行了染料标记,并进行了化学修饰,使其具有末端羧基,并用作可变大小的探针,以研究在溶胶凝胶薄膜中的扩散。使用全内反射荧光光谱实验(相关性和浓度跃变测量)来测量薄膜中树枝状聚合物的相对种群和有效扩散系数。对于由小(27纳米)二氧化硅颗粒制备的薄膜,可以完全排除较大的树枝状大分子穿透溶胶凝胶结构。在由具有较大孔的较大粒子(150 nm)制成的薄膜中,浓度跳跃实验表明,与较大的树枝状大分子相比,较大的树枝状大分子被排除在更多的粒子内部孔隙空间之外。类似地,荧光相关测量表明,较小的树枝状聚合物的扩散在膜的颗粒间孔中比较大的树枝状聚合物表现出更大的曲折性。较小的树枝状分子会探索较大体积的较小,较卷曲的孔,而较大的树枝状分子会穿透较小体积的较大,较开放的孔。

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