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Attenuated total reflectance spectroscopy of coumarin organosilane molecules adsorbed on a fused silica surface

机译:吸附在熔融石英表面的香豆素有机硅烷分子的衰减全反射光谱

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Attenuated total reflectance (ATR) spectroscopy was used to investigate the adsorption of coumarin organosilane molecules onto a fused silica surface. The difference between the absorption spectra of the molecules on the surface and in solution was explained by the interaction of the adsorbed coumarin organosilane molecules with the hydroxyl groups on the fused silica surface. This interaction produces a perturbation of the it electron distribution and the electronic transitions of the coumarin chromophore of the organosilane molecules adsorbed on the surface. From the kinetics adsorption curves, the calculated enthalpy values of 74.8 ±5.2 kj mol~(-1) and free energy of -38.22 ± 0.70 kjmol~(-1) at 23 ℃ indicates a chemisorption process. The high sensitivity of ATR spectroscopy allows the detection of a monolayer formed by a 10nM concentration of coumarin organosilane molecules, which covers more than half of the maximum surface coverage at 60 ℃.
机译:衰减全反射(ATR)光谱用于研究香豆素有机硅烷分子在熔融石英表面上的吸附。表面和溶液中分子的吸收光谱之间的差异是由吸附的香豆素有机硅烷分子与熔融二氧化硅表面上的羟基的相互作用所解释的。这种相互作用使表面上吸附的有机硅烷分子的it电子分布和香豆素发色团的电子跃迁产生扰动。从动力学吸附曲线可知,在23℃下,其焓值为74.8±5.2kjmol〜(-1),自由能为-38.22±0.70kjmol〜(-1),表明了化学吸附过程。 ATR光谱仪的高灵敏度允许检测由浓度为10nM的香豆素有机硅烷分子形成的单层,该分子覆盖60℃时最大表面覆盖率的一半以上。

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