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首页> 外文期刊>Angewandte Chemie >Direct Time-Domain Observation of Conformational Relaxation in Gas-Phase Cold Collisions
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Direct Time-Domain Observation of Conformational Relaxation in Gas-Phase Cold Collisions

机译:气相冷碰撞中构象弛豫的直接时域观测

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摘要

Cooling molecules in the gas phase is important for precision spectroscopy, cold molecule physics, and physical chemistry. Measurements of conformational relaxation cross sections shed important light on potential energy surfaces and energy flow within a molecule. However, gas-phase conformational cooling has not been previously observed directly. In this work, we directly observe conformational dynamics of 1,2-propanediol in cold (6K) collisions with atomic helium using microwave spectroscopy and buffer-gas cooling. Precise knowledge and control of the collisional environment in the buffer-gas allows us to measure the absolute collision cross-section for conformational relaxation. Several conformers of 1,2-propanediol are investigated and found to have relaxation cross-sections with He ranging from sigma=4.7(3.0)x10(-18)cm(2) to sigma>5x10(-16)cm(2). Our method is applicable to a broad class of molecules and could be used to provide information about the potential energy surfaces of previously uninvestigated molecules.
机译:气相中的冷却分子对于精密光谱学,冷分子物理学和物理化学很重要。构象弛豫截面的测量为分子内的势能表面和能量流提供了重要的信息。但是,以前尚未直接观察到气相构象冷却。在这项工作中,我们使用微波光谱法和缓冲气体冷却法直接观察了1,2-丙二醇在与原子氦的冷(6K)碰撞中的构象动力学。对缓冲气体中碰撞环境的精确了解和控制使我们能够测量绝对碰撞横截面,以进行构象松弛。研究了一些构象的1,2-丙二醇,其He的弛豫截面为sigma = 4.7(3.0)x10(-18)cm(2)至sigma> 5x10(-16)cm(2)。我们的方法适用于各种分子,可用于提供有关以前未研究的分子的势能面的信息。

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