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Dynamics of Atomic and Molecular Hydrogen Elimination from Hydrocarbons at VUV Excitation
Authors:Jim J Lin  Steve Harich  Dennis W Hwang  Malcom S Wu  Yuan T Lee  Xueming Yang
Abstract:Elimination of atomic hydrogen (H) and molecular hydrogen (H2) are important elementary chemical processes in photochemistry and combustion chemistry. Recently, unique and sensitive detection techniques for atomic and molecular hydrogen detection were developed in our laboratory. Using the advanced molecular beam methods, we have studied the photodissociation of a few typical hydrocarbons at 157 nm excitation, especially their atomic and molecular hydrogen elimination processes. In this report, we will briefly describe the results from photodissociation of propane, ethylene, propyne and methanol at 157 nm excitation. These molecules represent different classes of hydrocarbons such as alkane, alkene, alkyne and alcohol. Through careful studies on differently deuterated compounds, clear pictures of selective atomic and molecular hydrogen elimination processes can be constructed for all of the above compounds. These results will help us to understand the dissociation dynamics of the small hydrocarbon molecules.
Keywords:Photodissociation  Hydrocarbons  VUV light  Atomic elimination  Molecular elimination
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