How long can you make an oxygen chain?

被引:80
作者
Mckay, DJ [1 ]
Wright, JS [1 ]
机构
[1] Carleton Univ, Ottawa Carleton Chem Inst, Dept Chem, Ottawa, ON K1S 5B6, Canada
关键词
D O I
10.1021/ja971534b
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
This paper reports theoretical gas-phase structures and energetics using G2(MP2) theory for saturated oxygen chains of the general formula HOnH. Structural trends are discussed using a simple hyperconjugation model which is capable of giving a qualitative explanation for trends in bond lengths and dihedral angles. Bond dissociation energies (BDEs) are calculated for chains of increasing length, giving 49.9, 33.9, and 17.8 kcal/mol for H2O2, H2O3, and H2O4, respectively. From an analysis of the radical stabilization energy of the fragments remaining after dissociation, it is shown that a minimum value for the BDE for any hydrogen polyoxide is 6.4 kcal/mol, which occurs for the center bond in H2O6, and that longer chains will have a higher BDE. Decomposition pathways responsible for the observed instability of the polyoxides higher than hydrogen peroxide are discussed and results are given for three low-barrier dissociation paths: a solvent-assisted path, a base-catalyzed path, and a proton relay mechanism. These mechanisms are probably general and account for the instability of polyoxide chains in proton-containing solvents. Preventing proton transfer, e.g. by perfluoroalkylation, would therefore be expected to increase chain stability, in agreement with experimental observations.
引用
收藏
页码:1003 / 1013
页数:11
相关论文
共 42 条
[11]   GAUSSIAN-2 THEORY - USE OF HIGHER-LEVEL CORRELATION METHODS, QUADRATIC CONFIGURATION-INTERACTION GEOMETRIES, AND 2ND-ORDER MOLLER-PLESSET ZERO-POINT ENERGIES [J].
CURTISS, LA ;
RAGHAVACHARI, K ;
POPLE, JA .
JOURNAL OF CHEMICAL PHYSICS, 1995, 103 (10) :4192-4200
[12]   GAUSSIAN-2 THEORY USING REDUCED MOLLER-PLESSET ORDERS [J].
CURTISS, LA ;
RAGHAVACHARI, K ;
POPLE, JA .
JOURNAL OF CHEMICAL PHYSICS, 1993, 98 (02) :1293-1298
[13]   STUDIES ON HYDROGEN-OXYGEN SYSTEMS IN ELECTRICAL DISCHARGE .5. RAMAN SPECTRA OF TRAPPED PRODUCTS [J].
DEGLISE, X ;
GIGUERE, PA .
CANADIAN JOURNAL OF CHEMISTRY, 1971, 49 (13) :2242-&
[14]   The hydroperoxyl radical dimer: Triplet ring or singlet string? [J].
Fermann, JT ;
Hoffman, BC ;
Tschumper, GS ;
Schaefer, HF .
JOURNAL OF CHEMICAL PHYSICS, 1997, 106 (12) :5102-5108
[15]   THE OPEN-CHAIN OR CHEMICALLY BONDED STRUCTURE OF H2O4 - THE HYDROPEROXYL RADICAL DIMER [J].
FITZGERALD, G ;
LEE, TJ ;
SCHAEFER, HF ;
BARTLETT, RJ .
JOURNAL OF CHEMICAL PHYSICS, 1985, 83 (12) :6275-6282
[16]   AN ABINITIO INVESTIGATION OF THE SIGNIFICANCE OF THE HOOF INTERMEDIATE IN COUPLING REACTIONS INVOLVING FOOX AND HOX SPECIES [J].
FRANCISCO, JS .
JOURNAL OF CHEMICAL PHYSICS, 1993, 98 (03) :2198-2207
[17]  
Frisch M.J., 1995, GAUSSIAN 94 REVISION
[18]   STUDIES ON HYDROGEN-OXYGEN SYSTEMS IN ELECTRICAL DISCHARGE .4. SPECTROSCOPIC IDENTIFICATION OF MATRIX-STABILIZED INTERMEDIATES, H2O3 AND H2O4 [J].
GIGUERE, PA ;
HERMAN, K .
CANADIAN JOURNAL OF CHEMISTRY, 1970, 48 (22) :3473-&
[19]   KINETICS OF THE REACTION BETWEEN OH AND HO2 ON THE TRIPLET POTENTIAL-ENERGY SURFACE [J].
GONZALEZ, C ;
THEISEN, J ;
SCHLEGEL, HB ;
HASE, WL ;
KAISER, EW .
JOURNAL OF PHYSICAL CHEMISTRY, 1992, 96 (04) :1767-1774
[20]  
GONZALEZ C, 1991, J PHYS CHEM, V95, P6874