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Enhanced vibrational solvatochromism and spectral diffusion by electron rich substituents on small molecule silanes

机译:小分子硅烷上的富电子取代基增强了振动溶剂变色和光谱扩散

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摘要

Fourier transform infrared and two-dimensional IR (2D-IR) spectroscopies were applied to two different silanes in three different solvents. The selected solutes exhibit different degrees of vibrational solvatochromism for the Si–H vibration. Density functional theory calculations confirm that this difference in sensitivity is the result of higher mode polarization with more electron withdrawing ligands. This mode sensitivity also affects the extent of spectral diffusion experienced by the silane vibration, offering a potential route to simultaneously optimize the sensitivity of vibrational probes in both steady-state and time-resolved measurements. Frequency-frequency correlation functions obtained by 2D-IR show that both solutes experience dynamics on similar time scales and are consistent with a picture in which weakly interacting solvents produce faster, more homogeneous fluctuations. Molecular dynamics simulations confirm that the frequency-frequency correlation function obtained by 2D-IR is sensitive to the presence of hydrogen bonding dynamics in the surrounding solvation shell.
机译:将傅里叶变换红外光谱和二维IR(2D-IR)光谱学应用于三种不同溶剂中的两种不同硅烷。选定的溶质对Si–H振动表现出不同程度的振动溶剂致变色作用。密度泛函理论计算证实,这种灵敏度差异是较高模式极化和更多吸电子配体的结果。这种模式灵敏度还会影响硅烷振动经历的频谱扩散程度,从而提供了一条潜在途径,可同时优化稳态和时间分辨测量中振动探针的灵敏度。通过2D-IR获得的频率-频率相关函数表明,两种溶质在相似的时间尺度上都经历了动力学,并且与弱相互作用的溶剂产生更快,更均匀的波动的图像一致。分子动力学模拟证实,通过2D-IR获得的频率-频率相关函数对周围溶剂化壳中氢键动力学的存在敏感。

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