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Photoelectron spectra, penning ionization electron spectra, and character of canonical molecular orbitals

✍ Scribed by Chen, Erh-Hao; Chang, Tse-Chiang


Publisher
John Wiley and Sons
Year
1998
Tongue
English
Weight
196 KB
Volume
19
Category
Article
ISSN
0192-8651

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✦ Synopsis


When canonical molecular orbitals are expanded in terms of a set of localized molecular orbital building blocks, called bond orbitals, the character of the canonical molecular orbitals can be characterized according to the component bond orbitals resembling the core, lone pair, and localized bond building blocks in an intuitive Lewis structure. Weinhold's natural bond orbital method can produce a unique Lewis structure with total occupancy of its occupied bond orbitals exceeding 99.9% of the total electron density for simple molecules. Two useful indices, Lewis bond order and weight of lone pair orbitals, can be defined according to the weights of the bonding and lone pair components of this unique Lewis structure. Calculation results for molecules N , CO, CS, NO, HCN, C H , H O, and H S show that the former index can 2 2 22 2

account for the vibrational structures of photoelectron spectroscopy, whereas the latter index can account for the band intensity enhancement of Penning ionization electron spectroscopy.


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