GEOMETRIES OF O4+, O4-, AND N4+ BY AN APPROXIMATE SCF-MO THEORY WHICH CONSIDERS INTERMOLECULAR DIFFERENTIAL OVERLAP

被引:65
作者
CONWAY, DC
机构
[1] Department of Chemistry, Texas AandM University, College Station
关键词
D O I
10.1063/1.1671640
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
We have found that the CNDO/2 (semiempirical SCF-MO) theory does not properly account for the long-range repulsive interactions in O 2-O2 (S=1/2) and O2-O2+ (S=1/2). This results in the O2-O2 interaction potential being zero at O-O separations of 2.3-3.5 Å and the O2-O 2+ bond energy being much too large. The CNDO/2 method has been modified by considering sp-type integrals to account for charge-quadrupole and charge-atomic polarization interactions. In addition, differential overlap is considered and multicenter integrals are approximated for intermolecular interactions. This is a semiempirical method in which the adjustable constants are fixed by the quadrupole moments of O2 and N2 and the O4+ bond energy. The interaction energies of O 4+, O4-, and N4 + are computed for structures of C2 symmetry as a function of θ and R. The equilibrium dissociation energies De (kcal) at Re (Å) and θ3 are as follows: O 4+, 11.66, 2.03, -67°; O4-, 8.49, 2.08, -71°; N4+, 34.7, 2.04, 0°. The computed O2-O2 interaction potential is in reasonable agreement with the experimental results for the repulsive part of the van der Waals potential.
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页码:3864 / &
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共 20 条
[1]   STABILITY OF O4- [J].
CONWAY, DC ;
NESBITT, LE .
JOURNAL OF CHEMICAL PHYSICS, 1968, 48 (01) :509-&
[2]   ATTACHMENT OF LOW-ENERGY ELECTRONS TO OXYGEN [J].
CONWAY, DC .
JOURNAL OF CHEMICAL PHYSICS, 1962, 36 (10) :2549-&
[3]   BONDING IN HOMOMOLECULAR ION CLUSTERS O 2N+2+ [J].
CONWAY, DC ;
YANG, JH .
JOURNAL OF CHEMICAL PHYSICS, 1965, 43 (08) :2900-&
[4]  
CRANDALL SH, 1956, ENGINEERING ANALYSIS, P118
[5]  
Herzberg G., 1966, ELECT SPECTRA ELECT
[6]  
JANIK GS, 1966, THESIS TEXAS AM U
[7]  
KOTANI M, 1955, TABLE MOLECULAR INTE
[10]   ELECTRON ATTACHMENT AND DETACHMENT .I. PURE O2 AT LOW ENERGY [J].
PACK, JL ;
PHELPHS, AV .
JOURNAL OF CHEMICAL PHYSICS, 1966, 44 (05) :1870-&