PROTONATED ETHANE - A THEORETICAL INVESTIGATION OF C2H7+ STRUCTURES AND ENERGIES

被引:72
作者
CARNEIRO, JWD
SCHLEYER, PV
SAUNDERS, M
REMINGTON, R
SCHAEFER, HF
RAUK, A
SORENSEN, TS
机构
[1] UNIV ERLANGEN NURNBERG,INST ORGAN CHEM,CTR COMP CHEM,D-91054 ERLANGEN,GERMANY
[2] YALE UNIV,DEPT CHEM,NEW HAVEN,CT 06520
[3] UNIV GEORGIA,CTR COMPUTAT QUANTUM CHEM,ATHENS,GA 30602
[4] UNIV CALGARY,DEPT CHEM,CALGARY T2N 1N4,AB,CANADA
[5] UNIV FED FLUMINENSE,INST QUIM,DEPT INORGAN CHEM,BR-24020 NITEROI,RJ,BRAZIL
关键词
D O I
10.1021/ja00087a039
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The C2H7+ potential energy surface was characterized by high-level ab initio calculations. The effects of electron correlation on geometries and relative energies are substantial. At MP4(SDTQ)/6-311G**//MP2(full)l 6-31G**, the global minimum is the C-C protonated structure 1, 4.4 kcal/mol (corrected to 298 K) more stable than the C-H protonated form 3. The proton affinity of ethane to give 1 (142.5 kcal/mol) is 12.5 kcal/mol greater than that of methane (130 kcal/mol). Methane adds to the methyl cation, leading to 1 without activation energy. Barriers for intramolecular hydrogen interchange are lower than the dissociation energy into the ethyl cation and hydrogen, consistent with the experimental observation that deuterium scrambling is faster than dissociation. C2H7+ loses H-2 by 1,1-elimination in an endothermic (10.6 kcal/mol) process. Three frequencies deduced experimentally for C2H7+ correspond to those computed for 1, but neither 2, the H-2-rotatd C-H protonated form, nor 3 can explain the other set of experimental spectral data. Complexes between H-2 and bridged C2H5+ were located, but they are too weakly bonded to be detected experimentally.
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页码:3483 / 3493
页数:11
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