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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Direct evidence of hydrogen-atom tunneling dynamics in the excited state hydrogen transfer (ESHT) reaction of phenol-ammonia clusters
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Direct evidence of hydrogen-atom tunneling dynamics in the excited state hydrogen transfer (ESHT) reaction of phenol-ammonia clusters

机译:苯酚-氨团簇的激发态氢转移(ESHT)反应中氢原子隧穿动力学的直接证据

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摘要

The photodynamics of phenol-ammonia clusters, PhOH(NH3)_(3-5), after one UV photon absorption, has been investigated using velocity map imaging of the NH4(NH3)_(2-4) cluster products. The dependence of the NH4(NH3)2 translational energy distributions on the available energy reveals three dynamical regions in close correspondence with the photodissociation of bare phenol. At low excitation energies (between 282 and 260 nm), the NH4(NH3)2 distribution mirrors the hydrogen-atom passage through the 1~1ππ-1~1πσ barrier, constituting the first evidence of hydrogen-atom tunneling dynamics in an excited state hydrogen transfer (ESHT) reaction. At excitation wavelengths below 260 nm, the product distributions are consistent with two separate barrierless dissociation processes associated, respectively, with excitation to the 1~1ππ and 2~1ππ excited electronic states. Similar conclusions can be derived from the velocity map imaging results on the larger NH4(NH3)3,4 cluster products.
机译:使用NH4(NH3)_(2-4)簇产物的速度图成像研究了苯胺-氨团簇PhOH(NH3)_(3-5)的光动力学,该紫外光子吸收了一个紫外线光子。 NH 4(NH 3)2平移能量分布对可用能量的依赖性揭示了三个动态区域,其与裸苯酚的光解离密切相关。在低激发能(介于282和260 nm之间)下,NH4(NH3)2分布反映了氢原子通过1〜1ππ-1〜1πσ势垒的通道,构成了在激发态下氢原子隧穿动力学的第一个证据氢转移(ESHT)反应。在低于260 nm的激发波长下,产物分布与分别与激发到1〜1ππ和2〜1ππ激发电子态相关的两个独立的无障碍解离过程一致。从较大的NH4(NH3)3,4簇产物的速度图成像结果可以得出类似的结论。

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