A crossed molecular beam study on the dynamics of F atom reaction with SiH4
Guanlin Shen, Xueming Yang, Jinian Shu, Chung-Hsin Yang, Yuan T. Lee
Abstract
Guanlin Shen, Xueming Yang, Jinian Shu, Chung-Hsin Yang, Yuan T. Lee
Abstract
In this report, the dynamics of the F+SiH4 reaction has been studied using the universal crossed molecular beam method. Angular resolved time-of-flight spectra have been measured for all reaction products in a single set of experiments. Two different reaction channels have been observed: HF+SiH3 and SiH3F+H. Product angular distributions as well as energy distributions were determined for these two product channels. Experimental results show that the HF product is forward scattered relative to the F atom beam direction, while the SiH3F product is backward scattered relative the F atom beam direction, suggesting that two reaction channels proceed with distinctive reaction dynamics. The relative branching ratios of the two channels have also been estimated.
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In this report, the dynamics of the F+SiH4 reaction has been studied using the universal crossed molecular beam method. Angular resolved time-of-flight spectra have been measured for all reaction products in a single set of experiments. Two different reaction channels have been observed: HF+SiH3 and SiH3F+H. Product angular distributions as well as energy distributions were determined for these two product channels. Experimental results show that the HF product is forward scattered relative to the F atom beam direction, while the SiH3F product is backward scattered relative the F atom beam direction, suggesting that two reaction channels proceed with distinctive reaction dynamics. The relative branching ratios of the two channels have also been estimated.
Key concepts: Crossed molecular beam, Atom (system on chip), Reaction dynamics, Beam (structure), Branching (polymer chemistry), Chemistry, Atomic physics, Molecular beam