BIRADICAL THERMOCHEMISTRY FROM COLLISION-INDUCED DISSOCIATION THRESHOLD ENERGY MEASUREMENTS .2. EXPERIMENTAL AND THEORETICAL-STUDIES OF THE MECHANISM AND THERMOCHEMISTRY OF FORMATION OF ALPHA,N-DEHYDROTOLUENE BIRADICALS FROM GAS-PHASE HALIDE ELIMINATION-REACTIONS

被引:80
作者
WENTHOLD, PG [1 ]
WIERSCHKE, SG [1 ]
NASH, JJ [1 ]
SQUIRES, RR [1 ]
机构
[1] PURDUE UNIV,DEPT CHEM,W LAFAYETTE,IN 47907
关键词
D O I
10.1021/ja00095a048
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Absolute heats of formation for alpha,2-, alpha,3-, and alpha,4-dehydrotoluene biradicals have been determined from the measured threshold energies for dissociation of chloride, bromide, and iodide ion from the corresponding o-, m-, and p-halobenzyl anions in the gas phase. The apparent heats of formation derived for the alpha,2- and alpha,4-dehydrotoluene biradicals exhibit a dependence upon the particular halide ion used for the threshold energy measurement (decreasing with increasing halide atomic number), while the final heat of formation obtained for the alpha,3-dehydrotoluene biradical is invariant with changes in the halide. The 298 K heats of formation derived from the iodobenzyl anion results for alpha,2-, alpha,3-, and alpha,4-dehydrotoluene are all found to be 103 +/- 3 kcal/mol. This value is in fair agreement with the predicted heats of formation for the ground state of each biradical obtained from MCSCF calculations (105-106 kcal/mol) and significantly lower than the value of 107.6 +/- 1.7 kcal/mol predicted by a simple bond energy additivity calculation. The MCSCF calculations indicate alpha,2- and alpha,4-dehydrotoluene to be ground-state triplet biradicals with open-shell singlets lying 7.4 and 8.1 kcal/mol higher in energy, respectively, while alpha,3-dehydrotoluene is found to be a ground-state singlet with the triplet lying 3.0 kcal/mol higher in energy. The halide ion dependence of the apparent heats of formation for the alpha,2- and alpha,4-dehydrotoluene biradicals is attributed to the spin-forbidden nature of the dissociation reactions that produce them. The intersystem crossing required to form ground-state triplet products from the halobenzyl anion precursors is associated with a reverse activation energy and/or a kinetic shift in the reaction onset due to slow unimolecular decomposition kinetics. Both effects would be expected to diminish with the heavier halides. In contrast, dissociation of a m-halobenzyl anion to produce alpha,3-dehydrotoluene is spin-allowed, so the reaction occurs at the true thermochemical limit.
引用
收藏
页码:7378 / 7392
页数:15
相关论文
共 95 条
[81]   METAL-CARBONYL BOND STRENGTHS IN FE(CO)N(-) AND NI(CO)N(-) [J].
SUNDERLIN, LS ;
WANG, DN ;
SQUIRES, RR .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1992, 114 (08) :2788-2796
[82]   MOLECULAR-STRUCTURE OF BENZENE [J].
TAMAGAWA, K ;
IIJIMA, T ;
KIMURA, M .
JOURNAL OF MOLECULAR STRUCTURE, 1976, 30 (02) :243-253
[83]  
TURRO NJ, 1978, MODERN MOL PHOTOCHEM, pCH7
[84]   EXTENSION OF BEBO METHOD FOR THE ESTIMATION OF ACTIVATION-ENERGIES OF INTRARADICAL 1,2-HYDROGEN SHIFT REACTIONS [J].
VALKO, L ;
SIMON, P .
CHEMICAL PHYSICS, 1985, 99 (03) :447-456
[85]   REGIOSELECTIVE SYNTHESIS OF BIRADICAL NEGATIVE-IONS IN THE GAS-PHASE - GENERATION OF TRIMETHYLENEMETHANE, M-BENZYNE, AND P-BENZYNE ANIONS [J].
WENTHOLD, PG ;
HU, J ;
SQUIRES, RR .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1994, 116 (15) :6961-6962
[86]   ALPHA,3-DEHYDROTOLUENE - EXPERIMENTAL AND THEORETICAL EVIDENCE FOR A SINGLET GROUND-STATE [J].
WENTHOLD, PG ;
WIERSCHKE, SG ;
NASH, JJ ;
SQUIRES, RR .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1993, 115 (26) :12611-12612
[87]   THE ABSOLUTE HEATS OF FORMATION OF ORTHO-BENZYNE, META-BENZYNE, AND PARA-BENZYNE [J].
WENTHOLD, PG ;
PAULINO, JA ;
SQUIRES, RR .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1991, 113 (19) :7414-7415
[88]  
WENTHOLD PG, UNPUB
[89]   AN EFFICIENT INTERNALLY CONTRACTED MULTICONFIGURATION REFERENCE CONFIGURATION-INTERACTION METHOD [J].
WERNER, HJ ;
KNOWLES, PJ .
JOURNAL OF CHEMICAL PHYSICS, 1988, 89 (09) :5803-5814
[90]   A 2ND ORDER MULTICONFIGURATION SCF PROCEDURE WITH OPTIMUM CONVERGENCE [J].
WERNER, HJ ;
KNOWLES, PJ .
JOURNAL OF CHEMICAL PHYSICS, 1985, 82 (11) :5053-5063