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Spectral Inverse Quantum (Spectral-IQ) Method for Modeling Mesoporous Systems: Application on Silica Films by FTIR

机译:介孔系统建模的光谱逆量子(Spectral-IQ)方法:FTIR在二氧化硅膜上的应用

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摘要

The present work advances the inverse quantum (IQ) structural criterion for ordering and characterizing the porosity of the mesosystems based on the recently advanced ratio of the particle-to-wave nature of quantum objects within the extended Heisenberg uncertainty relationship through employing the quantum fluctuation, both for free and observed quantum scattering information, as computed upon spectral identification of the wave-numbers specific to the maximum of absorption intensity record, and to left-, right- and full-width at the half maximum (FWHM) of the concerned bands of a given compound. It furnishes the hierarchy for classifying the mesoporous systems from more particle-related (porous, tight or ionic bindings) to more wave behavior (free or covalent bindings). This so-called spectral inverse quantum (Spectral-IQ) particle-to-wave assignment was illustrated on spectral measurement of FT-IR (bonding) bands’ assignment for samples synthesized within different basic environment and different thermal treatment on mesoporous materials obtained by sol-gel technique with n-dodecyl trimethyl ammonium bromide (DTAB) and cetyltrimethylammonium bromide (CTAB) and of their combination as cosolvents. The results were analyzed in the light of the so-called residual inverse quantum information, accounting for the free binding potency of analyzed samples at drying temperature, and were checked by cross-validation with thermal decomposition techniques by endo-exo thermo correlations at a higher temperature.
机译:本工作基于最近的扩展的海森堡不确定性关系中量子对象的粒子波性质比率,通过利用量子涨落,提出了用于排序和表征介观体系孔隙率的逆量子(IQ)结构准则,根据特定于最大吸收强度记录的波数的频谱识别以及有关频带的半高处的左,右和全宽(FWHM)的光谱识别计算得出的自由和观察到的量子散射信息给定化合物的它提供了用于将介孔系统分类的层次结构,从更多与粒子相关的(多孔,紧密或离子结合)到更多的波动行为(自由或共价结合)。这种所谓的光谱逆量子(Spectral-IQ)粒子-波分配是在不同基本环境和通过溶胶获得的介孔材料的不同热处理条件下合成的样品的FT-IR(键)带分配的光谱测量中得到的。 -正十二烷基三甲基溴化铵(DTAB)和十六烷基三甲基溴化铵(CTAB)及其组合作为辅助溶剂的凝胶法。根据所谓的残留逆量子信息对结果进行分析,以说明分析样品在干燥温度下的自由结合力,并在较高温度下通过内分解热相关性与热分解技术进行交叉验证来检查结果温度。

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