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极低温度下的气相反应与能量转移。

Gas-phase reactions and energy transfer at very low temperatures.

作者信息

Sims I R, Smith I W

出版信息

Annu Rev Phys Chem. 1995;46:109-38. doi: 10.1146/annurev.pc.46.100195.000545.

Abstract

Experimental studies of gas-phase chemical reactions and molecular energy transfer at very low temperatures and between electrically neutral species are reviewed. Although work of collisionally induced vibrational and rotational transfer is described, emphasis is placed on very recent results on the rates of free radical reactions obtained by applying the pulsed laser photolysis (PLP)-laser-induced fluorescence (LIF) technique in a CRESU (Cinétique de Réactions en Ecoulement Supersonique Uniforme) apparatus at temperatures as low as 13 K. These measurements demonstrate that quite a wide variety of reactions-including those between two radicals, those between radicals and unsaturated molecules, and even some of those between radicals and saturated molecules-remain rapid at very low temperatures. Theoretical efforts to explain some of these results are described, as is their impact on attempts to model the synthesis of molecules in interstellar clouds.

摘要

综述了在极低温下以及电中性物种之间进行的气相化学反应和分子能量转移的实验研究。虽然文中描述了碰撞诱导振动和转动转移的工作,但重点是通过在温度低至13K的均匀超声速流动反应装置(CRESU)中应用脉冲激光光解(PLP)-激光诱导荧光(LIF)技术获得的自由基反应速率的最新结果。这些测量结果表明,相当多种类的反应——包括两个自由基之间的反应、自由基与不饱和分子之间的反应,甚至自由基与饱和分子之间的一些反应——在极低温下仍然迅速。文中描述了解释其中一些结果的理论研究,以及它们对星际云中分子合成建模尝试的影响。

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