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Spectroscopy of nanosized composites consisting of silicon-organic polymers in nanoporous silicas

机译:纳米多孔二氧化硅中由硅有机聚合物组成的纳米复合材料的光谱学

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摘要

Fluorescence and excitation spectra (T=5-290 K) of nanosized silicon-organic polymers poly(di-n-hexylsilane) and poly(methyl(phenyl)silane) incorporated into porous silica materials MCM-41 and SBA-15 have been studied with varying pore diameter from 2.8 to 10 nm. The controlled variation of the pore diameter in a wide range (2.8-10 nm) permitted us, for the first time, to investigate the optical properties of the polymers on their transition from isolated macromolecules to a film. It is found that this transition depends on polymer type and occurs via the formation of new spatially independent structures of the polymers not observed in the spectra of the film, namely, via the formation of disordered and (or) ordered conformations of polymer chains and clusters.
机译:研究了掺入多孔二氧化硅材料MCM-41和SBA-15中的纳米级有机硅聚合物聚(二正己基硅烷)和聚(甲基(苯基)硅烷)的荧光和激发光谱(T = 5-290 K)孔径从2.8到10 nm不等。孔径的可控变化范围很广(2.8-10 nm),这使我们第一次能够研究聚合物从分离的大分子过渡到薄膜时的光学性质。发现这种转变取决于聚合物类型,并且是通过形成膜光谱中未观察到的聚合物的新的空间独立结构而发生的,即通过形成聚合物链和簇的无序和(或)有序构象而发生的。 。

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