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低温拉瓦尔喷管膨胀中的动力学:从大气化学到气相中生物分子的氧化

Kinetics in cold Laval nozzle expansions: from atmospheric chemistry to oxidation of biomolecules in the gas phase.

作者信息

Hansmann Björn, Abel Bernd

机构信息

Institut für Physikalische Chemie der Universität Göttingen, Tammannstrasse 6, 37077 Göttingen, Germany.

出版信息

Chemphyschem. 2007 Feb 19;8(3):343-56. doi: 10.1002/cphc.200600646.

Abstract

New developments and recent applications of pulsed and miniaturised Laval nozzle technology allowing many gas-phase molecular processes to be studied at very low temperatures are highlighted. In the present Minireview we focus on molecular energy transfer and reactions of molecular radicals (e.g. OH) with neutral molecules. We show that with the combination of pulsed laser photolysis and sensitive laser-induced fluorescence detection a large number of fast reactions of radicals with more or less complex neutral molecules can be measured in Laval nozzle expansions nowadays. It is also demonstrated that collisional energy transfer of neutral molecules can be measured via kinetically controlled selective fluorescence (KCSF) excitation down to 58 Kelvin. Finally, we show that even the primary steps in the oxidation of biomolecules or biomolecular building blocks initiated by OH radicals can be followed at low temperatures. The temperature dependence of the measured rate constants is the key for an understanding of the underlying molecular mechanisms and the Laval nozzle expansion provides a unique environment for these measurements. The experimental finding that many reactions between radicals and neutral species can be rapid at low temperatures are discussed in terms of pre-reactive complexes formed in the overall complex forming bimolecular reactions.

摘要

本文重点介绍了脉冲式和小型化拉瓦尔喷嘴技术的新进展及其近期应用,这些技术使得许多气相分子过程能够在极低温度下进行研究。在本综述中,我们聚焦于分子能量转移以及分子自由基(如OH)与中性分子的反应。我们表明,如今通过脉冲激光光解和灵敏的激光诱导荧光检测相结合,在拉瓦尔喷嘴膨胀过程中可以测量大量自由基与或多或少复杂的中性分子之间的快速反应。还证明了中性分子的碰撞能量转移可以通过动力学控制的选择性荧光(KCSF)激发来测量,温度低至58开尔文。最后,我们表明即使在低温下也能追踪由OH自由基引发的生物分子或生物分子构建单元氧化的初级步骤。测量速率常数的温度依赖性是理解潜在分子机制的关键,而拉瓦尔喷嘴膨胀为这些测量提供了独特的环境。从整体络合物形成双分子反应中形成的预反应络合物的角度,讨论了自由基与中性物种之间许多反应在低温下可能快速进行这一实验发现。

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