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Searches on the potential energy hypersurfaces of GeCH2, GeSiH2, and Ge2H2

✍ Scribed by Amy J. Boone; David H. Magers; Jerzy Leszczyński


Publisher
John Wiley and Sons
Year
1998
Tongue
English
Weight
295 KB
Volume
70
Category
Article
ISSN
0020-7608

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✦ Synopsis


Optimum geometries are computed at both the SCF level of theory and the level of second-order perturbation theory for several isomers on the potential energy hypersurfaces of GeCH , GeSiH , and Ge H , including linear structures, methylene-2 2 2 2 carbenelike structures, dibridged structures, and monobridged structures. In addition, harmonic vibrational frequencies are computed to characterize these structures as local minima or transition states. All computations employ basis sets of triple-zeta quality on valence electrons with d and f polarization functions on the heavy atoms and p functions on hydrogen. This investigation is the first systematic study to include all of these germanium systems and to employ f-type polarization functions in such a study. Previous investigations of ours indicate that large basis sets such as those employed in this study can, in part, compensate for the lack of a more advanced treatment of electron correlation. While a dibridged global minimum is confirmed for both Ge H and GeSiH 2 2 2 systems, the C isomer, methylenegermene, is found to be the most stable structure for 2 v


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