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Ultrafast Vibrational Cooling Inside of a Molecular Container

机译:超快振动冷却分子容器内部

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Vibrational cooling of azulene encapsulated in a hemicarcerand molecular container was studied by pump-probe spectroscopy. Within 1.5 ps of excitation of azulene to the S-1 state, rapid internal conversion through a conical intersection leads to the formation of a vibrationally hot (similar to 1080 K) ground state, the subsequent cooling of which can be monitored by tracking the evolution of the red-shifted hot band at the edge of the ground-state absorption. It was found that the cooling of the hot So state of azulene in the host-guest complex (hemicarceplex) is 2-4 times faster than that in common organic solvents. Such large acceleration points to a high density of matching vibrational modes and efficient mechanical coupling between the guest and the host. The experimental observations were fully corroborated by the results of molecular dynamics simulations.
机译:通过泵探针光谱研究包封在半焦炭分子容器中的紫林的振动冷却。 在亚苏乙烯激发到S-1状态的1.5 ps内,通过锥形交叉点的快速内部转换导致形成振动热(类似于1080k)的地位,通过跟踪进化可以监测其后续冷却 在地面吸收边缘的红色移位热带。 结果发现,在宿主 - 客户综合体(Hemicarceplex)中的紫红素的冷却比普通有机溶剂的速度快2-4倍。 如此大的加速度指向高密度的匹配振动模式和客人和主机之间的有效机械耦合。 通过分子动力学模拟的结果完全证实了实验观察。

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