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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Rational Design of an Acetylenic Infrared Probe with Enhanced Dipole Strength and Increased Vibrational Lifetime
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Rational Design of an Acetylenic Infrared Probe with Enhanced Dipole Strength and Increased Vibrational Lifetime

机译:增强偶极强度的乙炔红外探针的合理设计,振动寿命增加

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摘要

Developing infrared (IR) probes is of great interest in biomolecular imaging and spectroscopy. We report our attempt to improve the IR properties of alkyne-derivatized compounds. The vibrational properties of the alkyne (C C) stretch mode of aromatic silylacetylene 1 and aliphatic silylacetylene 2 were studied using Fourier transform infrared and femtosecond IR pump-probe spectroscopies. We find that the insertion of silicon at the position adjacent to the alkyne group, separating it from the compound's main body, causes an approximately 10-fold increase in the dipole strength of the C C stretch mode and a lengthening of its vibrational lifetime from 5.6 ps for the acetylenic compound without a silicon atom acting like a thermal insulator to 50.6 and 50.4 ps for 1 and 2, respectively. The enhanced dipole strength and the increased lifetime of 1 allowed us to measure the 2D IR spectra for long waiting times up to 450 ps, which suggests that the dynamic observation range of 2D IR spectroscopy with these IR probes can be extended into the subnanosecond range where protein skeletal movements occur.
机译:开发红外线(IR)探针对生物分子成像和光谱感兴趣。我们报告我们试图改善炔烃衍生化合物的IR性质。使用傅里叶变换红外线和飞秒红外红外线泵探针光谱研究了芳族甲硅烷基乙炔1和脂族甲硅烷基乙炔2的炔氧烷1和脂族甲炔丙烯2的振动性能。我们发现,在与炔基相邻的位置处的硅的插入,将其与化合物的主体分离,导致CC拉伸模式的偶极强度增加大约10倍,并从5.6 ps延长其振动寿命对于没有硅原子的乙炔化合物,分别具有硅原子的硅原子,分别为50.6和50.4 ps,分别为1和2。增强的偶极强度和增加的寿命允许我们测量高达450 ps的长度等待时间的2D IR光谱,这表明2D IR光谱与这些IR探针的动态观察范围可以延伸到亚烷秒范围内发生蛋白质骨骼运动。

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