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XeF(2)与Si(100)相互作用中的原子提取与气相解离

Atom abstraction and gas phase dissociation in the interaction of XeF(2) with Si(100).

作者信息

Hefty R C, Holt J R, Tate M R, Ceyer S T

机构信息

Department of Chemistry, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.

出版信息

J Chem Phys. 2008 Dec 7;129(21):214701. doi: 10.1063/1.3025901.

Abstract

Xenon difluoride reacts with Si(100)2x1 by single atom abstraction whereby a dangling bond abstracts a F atom from XeF(2), scattering the complementary XeF product molecule into the gas phase, as observed in a molecular beam surface scattering experiment. Partitioning of the available reaction energy produces sufficient rovibrational excitation in XeF for dissociation of most of the XeF to occur. The resulting F and Xe atoms are shown to arise from the dissociation of gas phase XeF by demonstrating that the angle-resolved velocity distributions of F, Xe, and XeF conserve momentum, energy, and mass. Dissociation occurs within 2 A of the surface and within a vibrational period of the excited XeF molecule. Approximately an equal amount of the incident XeF(2) is observed to react by two atom abstraction, resulting in adsorption of a second F atom and scattering of a gas phase Xe atom. Two atom abstraction occurs for those XeF product molecules whose bond axes at the transition state are oriented within +/-60 degrees of the normal and with the F end pointed toward the surface.

摘要

二氟化氙与Si(100)2x1通过单原子提取反应,即一个悬空键从XeF₂中提取一个F原子,将互补的XeF产物分子散射到气相中,这在分子束表面散射实验中已被观察到。可用反应能量的分配在XeF中产生足够的转动振动激发,使得大部分XeF发生解离。通过证明F、Xe和XeF的角分辨速度分布守恒动量、能量和质量,表明产生的F和Xe原子源于气相XeF的解离。解离发生在表面2埃范围内以及激发态XeF分子的一个振动周期内。观察到大约等量的入射XeF₂通过双原子提取反应,导致吸附第二个F原子并散射出一个气相Xe原子。对于那些在过渡态时键轴与法线夹角在±60度以内且F端指向表面的XeF产物分子,会发生双原子提取。

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