On the enthalpy of formation of hydroxyl radical and gas-phase bond dissociation energies of water and hydroxyl

被引:455
作者
Ruscic, B
Wagner, AF
Harding, LB
Asher, RL
Feller, D
Dixon, DA
Peterson, KA
Song, Y
Qian, XM
Ng, CY
Liu, JB
Chen, WW
机构
[1] Argonne Natl Lab, Div Chem, Argonne, IL 60439 USA
[2] Pacific NW Natl Lab, William R Wiley Environm Mol Sci Lab, Richland, WA 99352 USA
[3] Washington State Univ, Richland, WA 99352 USA
[4] US DOE, Ames Lab, Ames, IA 50011 USA
[5] Iowa State Univ, Dept Chem, Ames, IA 50011 USA
[6] Univ Calif Berkeley, Lawrence Berkeley Natl Lab, Div Chem Sci, Berkeley, CA 94720 USA
[7] NASA, Ames Res Ctr, Moffett Field, CA 94035 USA
关键词
D O I
10.1021/jp013909s
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
In a recent letter (J. Phys. Chem. A, 2001, 105, 1), we argued that, although all major thermochemical tables recommend a value of DeltaHdegrees(f0)(OH) based on a spectroscopic approach, the correct value is 0.5 kcal/mol lower as determined from an ion cycle. In this paper, we expand upon and augment both the experimental and theoretical arguments presented in the letter. In particular, three separate experiments (mass-selected photoionization measurements, pulsed-field-ionization photoelectron spectroscopy measurements, and photoelectron-photoion coincidence measurements) utilizing the positive ion cycle to derive the O-H bond energy are shown to converge to a consensus value of the appearance energy AE(0)(OH+/H2O) = 146117 +/- 24 cm(-1) (18.116(2) +/- 0.003(0) eV). With the most accurate currently available zero kinetic energy photoionization value for the ionization energy IE(OH) = 104989 +/- 2 cm(-1), corroborated by a number of photoelectron measurements, this leads to D-0(H-OH) = 41128 +/- 24 cm(-1) = 117.59 +/- 0.07 kcal/mol. This corresponds to DeltaH(f0)(OH) = 8.85 +/- 0.07 kcal/mol and implies D-0(OH) = 35593 +/- 24 cm(-1) = 101.76 +/- 0.07 kcal/mol. These results are completely supported by the most sophisticated theoretical calculations ever performed on the HxO system, CCSD(T)/aug-cc-pVnZ, n = Q, 5, 6, and 7, extrapolated to the CBS limit and including corrections for core-valence effects, scalar relativistic effects, incomplete correlation recovery, and diagonal Born-Oppenheimer corrections. These calculations have an estimated theoretical error of less than or equal to0.2 kcal/mol based on basis set convergence properties. They reproduce the experimental results for dissociation energies, atomization energies, and ionization energies for the HxO system to within 0.0-0.2 kcal/mol. In contrast, the previously accepted values of the two successive bond dissociation energies of water differ from the current values by 0.5 kcal/mol. These values were derived from the spectroscopic determinations of D-0(OH) using a very short Birge-Sponer extrapolation on OH/OD A(1)Sigma(+). However, on the basis of a calculation of the A state potential energy curve (with a multireference single and double excitation wave function and an aug-cc-pV5Z basis set) and an exhaustive reanalyzis of the original measured data on both the A and B states of OH, the Birge-Sponer extrapolation can be demonstrated to significantly underestimate the bond dissociation energy, although only the last vibrational level was not observed experimentally. The recommended values of this paper affect a large number of other thermochemical quantities which directly or indirectly rely on or refer to D-0(H-OH), D-0(OH), or DeltaHdegrees(f)(OH). This is illustrated by an analysis of several reaction enthalpies, deprotonation enthalpies, and proton affinities.
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页码:2727 / 2747
页数:21
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