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首页> 外文期刊>The Journal of Chemical Physics >Photodissociation of CO2- in water clusters via Renner-Teller and conical interactions
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Photodissociation of CO2- in water clusters via Renner-Teller and conical interactions

机译:通过Renner-Teller和圆锥形相互作用光解水簇中的CO2-

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The photochemistry of mass selected CO2-(H2O)(m), m=2-40 cluster anions is investigated using 266 nm photofragment spectroscopy and theoretical calculations. Similar to the previous 355 nm experiment [Habteyes , Chem. Phys. Lett. 424, 268 (2006)], the fragmentation at 266 nm yields two types of anionic products: O-(H2O)(m-k) (core-dissociation products) and CO2-(H2O)(m-k) (solvent-evaporation products). Despite the same product types, different electronic transitions and dissociation mechanisms are implicated at 355 and 266 nm. The 355 nm dissociation is initiated by excitation to the first excited electronic state of the CO2- cluster core, the 1 B-2(1)((2)A '') state, and proceeds via a glancing Renner-Teller intersection with the ground electronic state at a linear geometry. The 266 nm dissociation involves the second excited electronic state of CO2-, the 2 (2)A(1)((2)A(')) state, which exhibits a conical intersection with the 3 B-2(2)(A(')) state at a bent geometry. The asymptotic O- based products are believed to be formed via this 3 B-2(2)(A(')) state. By analyzing the fragmentation results, the bond dissociation energy of CO2- to O-+CO in hydrated clusters (m >= 20) is estimated as 2.49 eV, compared to 3.46 eV for bare CO2-. The enthalpy of evaporation of one water molecule from asymptotically large CO2-(H2O)(m) clusters is determined to be 0.466 +/- 0.001 eV (45.0 +/- 0.1 kJ/mol). This result compares very favorably with the heat of evaporation of bulk water, 0.456 eV (43.98 kJ/mol). (c) 2007 American Institute of Physics.
机译:使用266 nm光碎裂光谱和理论计算研究了质量选定的CO2-(H2O)(m),m = 2-40簇阴离子的光化学。类似于先前的355 nm实验[Habteyes,Chem。物理来吧424,268(2006)],在266 nm处的裂解产生两种类型的阴离子产物:O-(H2O)(m-k)(核心离解产物)和CO2-(H2O)(m-k)(溶剂蒸发产物)。尽管产品类型相同,但在355和266 nm处涉及不同的电子跃迁和解离机理。 355 nm的解离是通过激发到CO2-团簇核的第一个激发电子态1 B-2(1)((2)A'')引发的,并通过一个掠过的Renner-Teller相交与处于线性几何形状的接地电子状态。 266 nm离解涉及CO2-的第二个激发电子态,即2(2)A(1)((2)A('))态,与3 B-2(2)(A)呈圆锥形相交('))状态处于弯曲的几何形状。渐近的基于O的产物被认为是通过这种3 B-2(2)(A('))状态形成的。通过分析碎片结果,估计水合簇(m> = 20)中CO2-与O- + CO的键解离能为2.49 eV,相比之下,裸露的CO2-为3.46 eV。从渐近大的CO2-(H2O)(m)团簇中蒸发出一个水分子的蒸发焓确定为0.466 +/- 0.001 eV(45.0 +/- 0.1 kJ / mol)。该结果与散装水的蒸发热0.456 eV(43.98 kJ / mol)相比非常有利。 (c)2007年美国物理研究所。

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