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Visualizing chemical compositions and kinetics of sol-gel by near-infrared multispectral imaging technique

机译:通过近红外多光谱成像技术可视化溶胶-凝胶的化学组成和动力学

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摘要

Kinetics of sol-gel formation were studied using the recently developed near-infrared (NIR) multispectral imaging instrument. This imaging spectrometer possesses all the advantages of conventional spectrometers. It also has additional features that NIR spectrometers cannot offer, namely, its ability to provide kinetic information at different positions within a sample. The high spatial resolution and sensitivity of the InSb camera make it possible for the imaging spectrometer to determine the kinetic from data recorded by a single pixel. Kinetics of sol-gel reactions, determined by this multispectral imaging instrument, show that the initial hydrolysis of the TEOS, MTES, or a mixture of these two alkoxysilanes is relatively inhomogeneous. The inhomogeneity is dependent on the number of pixels used to calculate the spectrum for each spot. Data calculated from a single pixel provide the largest inhomogeneity. No inhomogeneity was observed when an average of a large number of pixels (e.g., 10 x 10) is used for calculation. The inhomogeneities observed for TEOS sol-gels are different from those for the MTES sol-gels, and those for sol-gels prepared from a mixture of TEOS and MTES are relatively larger and more similar to those of the MTES sol-gels. A variety of reasons might account for the observed inhomogeneities including differences in the structure of the TEOS sol-gels and MTES sol-gels and the inability of the TEOS to mix well with MTES with the latter being more hydrophobic. [References: 33]
机译:使用最近开发的近红外(NIR)多光谱成像仪器研究了溶胶-凝胶形成的动力学。该成像光谱仪具有常规光谱仪的所有优点。它还具有NIR光谱仪无法提供的其他功能,即其在样品内不同位置提供动力学信息的能力。 InSb摄像机的高空间分辨率和灵敏度使成像光谱仪可以根据单个像素记录的数据确定动力学。由该多光谱成像仪器测定的溶胶-凝胶反应动力学表明,TEOS,MTES或这两种烷氧基硅烷的混合物的初始水解相对不均匀。不均匀性取决于用于计算每个点光谱的像素数。从单个像素计算出的数据提供最大的不均匀性。当使用大量像素(例如10×10)的平均值进行计算时,没有观察到不均匀性。 TEOS溶胶凝胶的不均匀性与MTES溶胶凝胶的不均匀性不同,由TEOS和MTES混合物制得的溶胶凝胶的不均匀性相对较大,与MTES溶胶凝胶的相似性更高。各种原因可能导致观察到的不均匀性,包括TEOS溶胶凝胶和MTES溶胶凝胶的结构差异,以及TEOS无法与MTES很好地混合,后者更疏水。 [参考:33]

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