Department of Chemistry, Trent University, Peterborough, ON, Canada, K9J 7B8.
J Mass Spectrom. 2013 Nov;48(11):1224-31. doi: 10.1002/jms.3284.
The chemistry of ionized acetone:Ar mixtures under varied ionizing electron density conditions has been studied using matrix-isolation techniques. Gaseous acetone diluted in excess argon gas was subjected to electron bombardment with 300 eV electrons at currents between 20 and 200 μA. Linear wire 'pin' and metal 'plate' electron collector geometries were employed, allowing a wide range of electron density conditions to be explored. The products of subsequent reaction processes were matrix isolated and analyzed by Fourier transform infrared absorption spectroscopy. Products included methane, ketene, 1-propen-2-ol (the enol isomer of acetone), CO, HCO, ethane, ethane, acetylene and CCCO. Product absolute and relative yields varied with acetone number density, the choice of anode geometry and the rate of electron bombardment. The overall chemistry observed is rationalized in terms of mechanistic steps involving unimolecular cation decomposition, ion-molecule reactions, radical-radical reactions and dissociative recombination processes.
Ar 混合物的化学性质。将气态丙酮在过量氩气中稀释,用 300eV 电子以 20 至 200μA 的电流进行电子轰击。采用线性线“针”和金属“板”电子收集器几何形状,可探索广泛的电子密度条件。随后的反应过程的产物通过傅里叶变换红外吸收光谱进行基质隔离和分析。产物包括甲烷、烯酮、1-丙烯-2-醇(丙酮的烯醇异构体)、CO、HCO、乙烷、乙烷、乙炔和 CCCO。产物的绝对和相对产率随丙酮数密度、阳极几何形状的选择和电子轰击的速率而变化。观察到的整体化学性质可以根据涉及单分子阳离子分解、离子-分子反应、自由基-自由基反应和离解复合过程的机理步骤来合理化。