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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Water dimer radical cation: Structures, vibrational frequencies, and energetics
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Water dimer radical cation: Structures, vibrational frequencies, and energetics

机译:水二聚体自由基阳离子:结构,振动频率和能量学

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Fourteen stationary points for the water dimer radical cation on its doublet electronic state potential energy surface have been characterized using coupled cluster theory with single and double excitations (CCSD) and CCSD with perturbative triple excitations [CCSD(T)]. This is done in conjunction with Dunning's correlation consistent polarized valence basis sets (cc-pVXZ and aug-cc-pVXZ, X = D, T, Q). Two stationary points are found to be local minima, isomer 1 (C_1 symmetry) with H_3O~- ?OH character (hydrogen-bonded system), and isomer 7 (C_2 symmetry) with [H_2O?H_2O]~- character (hemibonded system). Among the other stationary points, seven are transition states, and the remaining five are higher order saddle points. The fourteen water dimer radical cation structures lie within 45 kcal mol-1 of isomer 1. Structure 1, transition states 2 (C_s symmetry) and 3 (C_s symmetry) are related through torsion of the OH group; these three stationary points fall within one kcal mol~(-1), demonstrating the low energy barrier of the OH torsional mode. Adiabatic ionization energies of (H_2O)_2 to 1 and 7 are determined to be 10.81 and 11.19 eV, respectively; the former is in excellent agreement with the experimental value of 10.8-10.9 eV. The critical dissociation energy of 1 to H_3O_+ + O? is predicted to be 26.4 kcal mol~(-1), while the dissociation energy of isomer 7 to H_2O~- + H_2O is determined to be 34.7 kcal mol~(-1). At the aug-cc-pVQZ CCSD(T) level of theory, the hydrogen-bonded 1 and hemibonded 7 minima are separated by 8.8 kcal mol ~(-1) with an interconversion barrier (1 -10 -7) of 15.1 kcal mol ~(-1). A careful comparison is made with the recent experiments of Gardenier, Johnson, and McCoy on (H_2O)_2~+?Ar and (H_2O)_2~+?Ar_2.
机译:利用单和双激发(CCSD)和带扰动三激发[CCSD(T)]的耦合簇理论,表征了其二重态电子态势能面上水二聚体自由基阳离子的十四个固定点。这是与邓宁的相关一致的极化价基集(cc-pVXZ和aug-cc-pVXZ,X = D,T,Q)结合完成的。发现两个固定点是局部最小值,具有H_3O〜-?OH特性的异构体1(C_1对称)(氢键系统)和具有[H_2O?H_2O]〜特性的异构体7(C_2对称)(半键系统)。 。在其他固定点中,有七个是过渡状态,其余五个是高阶鞍点。十四个水二聚体自由基阳离子结构位于异构体1的45 kcal mol-1范围内。结构1,过渡态2(C_s对称性)和3(C_s对称性)通过OH基团的扭转而关联;这三个固定点都在1 kcal mol〜(-1)范围内,说明了OH扭转模式的低能垒。 (H_2O)_2到1和7的绝热电离能分别确定为10.81和11.19 eV。前者与实验值10.8-10.9 eV非常吻合。 1到H_3O_ + + O?的临界解离能预测为26.4 kcal mol〜(-1),而异构体7分解为H_2O〜-+ H_2O的离解能为34.7 kcal mol〜(-1)。在理论的aug-cc-pVQZ CCSD(T)水平上,氢键1和半键7的最小值之间的距离为8.8 kcal mol〜(-1),互变势垒(1 -10 -7)为15.1 kcal mol 〜(-1)。与Gardenier,Johnson和McCoy最近对(H_2O)_2〜+?Ar和(H_2O)_2〜+?Ar_2的实验进行了仔细的比较。

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