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Carbon tunneling from a single quantum state

机译:单量子态的碳隧穿

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We observed ring expansion of 1-methylcyclobutylfluorocarbene at 8 kelvin, a reaction that involves carbon tunneling. The measured rate constants were 4.0x10(-6) per second in nitrogen and 4x10(-5) per second in argon. Calculations indicated that at this temperature the reaction proceeds from a single quantum state of the reactant so that the computed rate constant has achieved a temperature-independent limit. According to calculations, the tunneling contribution to the rate is 152 orders of magnitude greater than the contribution from passage over the barrier. We discuss environmental effects of the solid-state inert-gas matrix on the reaction rate. [References: 28]
机译:我们观察到1-甲基环丁基氟卡宾在8开尔文处的扩环,该反应涉及碳隧穿。测得的速率常数在氮气中为每秒4.0x10(-6),在氩气中为每秒4x10(-5)。计算表明,在此温度下,反应从反应物的单量子态进行,因此计算出的速率常数已达到与温度无关的极限。根据计算,隧穿对速率的贡献比通过障碍的贡献大152个数量级。我们讨论了固态惰性气体基质对反应速率的环境影响。 [参考:28]

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