Department of Chemistry and Biochemistry, Mount Allison University , 63C York Street, Sackville, New Brunswick E4L 1G8, Canada.
J Am Chem Soc. 2014 Feb 12;136(6):2200-3. doi: 10.1021/ja408438s. Epub 2014 Feb 3.
We report herein a means to modify the reactivity of alkenes, and particularly to modify their selectivity toward reactions with nonpolar reactants (e.g., nonpolar free radicals) in supercritical carbon dioxide near the critical point. Rate constants for free radical addition of the light hydrogen isotope muonium to ethylene, vinylidene fluoride, and vinylidene chloride in supercritical carbon dioxide are compared over a range of pressures and temperatures. Near carbon dioxide's critical point, the addition to ethylene exhibits critical speeding up, while the halogenated analogues display critical slowing. This suggests that supercritical carbon dioxide as a solvent may be used to tune alkene chemistry in near-critical conditions.
我们在此报告一种改变烯烃反应性的方法,特别是在超临界二氧化碳中改变其对非极性反应物(例如非极性自由基)的选择性的方法,超临界二氧化碳接近临界点。在一系列压力和温度下,比较了轻氢同位素 muonium 与乙烯、偏二氟乙烯和偏二氯乙烯的自由基加成反应的速率常数。在二氧化碳的临界点附近,乙烯的加成表现出临界加速,而卤代类似物则表现出临界减速。这表明超临界二氧化碳作为溶剂可用于在近临界条件下调节烯烃化学。