The geometries of DATB( 1,3-diamino-2,4 ,6-trinitrobenzene) and TATB( 1,3,5-tri-amino-2,4,6-trinitrobenzene) have been optimized by M1NDO/3 method. It is found that the total energy of the molecule is rather low at th...The geometries of DATB( 1,3-diamino-2,4 ,6-trinitrobenzene) and TATB( 1,3,5-tri-amino-2,4,6-trinitrobenzene) have been optimized by M1NDO/3 method. It is found that the total energy of the molecule is rather low at the plane configuration. It is also found that the orbitals between the amino-N and its adjacent nitro-N as well as the amino-N and its adjacent nitro-N on the ring are rather close and matched in symmetry and have high orbital interaction through space, which are evidently seen from the computed results of the atomic bond index. The electronic spectra of DATB have been computed by using INDO/2-CI method, and the results are well conformed with the experimental facts. For instance, the transition from 'A' (ground state' ) to 'A' (the 7th exciled state) corresponds to the computed spectrum line(2. 48×104 cm-1) which is close to the experimental value (2. 43×104 cm-1). From a similar computation, we may predict that the major spectrum line of TATB will be 2. 75, 2. 77, 3. 28 and 3. 32×104 cm-1.展开更多
The non-spherical lowest-lying Lin(n=15–17)isomers were found with high symmetric compact structures,of which the stability was not rationalized in a previous report(J.Chem.Phys.1199444(2003)).Based on the newly prop...The non-spherical lowest-lying Lin(n=15–17)isomers were found with high symmetric compact structures,of which the stability was not rationalized in a previous report(J.Chem.Phys.1199444(2003)).Based on the newly proposed super-valence bond model,the three prolate lithium clusters can be viewed as magnetic superatomic molecules,which are composed by sharing valence electron pairs and nuclei between two superatom units,namely,Li10 or Li11,and thus their stability can be given a good understanding.Molecular orbital and chemical bonding analysis clearly reveal that the Lin(n=15–17)clusters with prolate shapes are magnetic superatomic molecules.Our work may aid in the developments of the cluster-assembled materials or superatom-bonds.展开更多
文摘The geometries of DATB( 1,3-diamino-2,4 ,6-trinitrobenzene) and TATB( 1,3,5-tri-amino-2,4,6-trinitrobenzene) have been optimized by M1NDO/3 method. It is found that the total energy of the molecule is rather low at the plane configuration. It is also found that the orbitals between the amino-N and its adjacent nitro-N as well as the amino-N and its adjacent nitro-N on the ring are rather close and matched in symmetry and have high orbital interaction through space, which are evidently seen from the computed results of the atomic bond index. The electronic spectra of DATB have been computed by using INDO/2-CI method, and the results are well conformed with the experimental facts. For instance, the transition from 'A' (ground state' ) to 'A' (the 7th exciled state) corresponds to the computed spectrum line(2. 48×104 cm-1) which is close to the experimental value (2. 43×104 cm-1). From a similar computation, we may predict that the major spectrum line of TATB will be 2. 75, 2. 77, 3. 28 and 3. 32×104 cm-1.
基金Project supported by the PhD Starting Fund of Guangdong Ocean University(Grant No.120702/R17077)the National Natural Science Foundation of China(Grant No.11704080).
文摘The non-spherical lowest-lying Lin(n=15–17)isomers were found with high symmetric compact structures,of which the stability was not rationalized in a previous report(J.Chem.Phys.1199444(2003)).Based on the newly proposed super-valence bond model,the three prolate lithium clusters can be viewed as magnetic superatomic molecules,which are composed by sharing valence electron pairs and nuclei between two superatom units,namely,Li10 or Li11,and thus their stability can be given a good understanding.Molecular orbital and chemical bonding analysis clearly reveal that the Lin(n=15–17)clusters with prolate shapes are magnetic superatomic molecules.Our work may aid in the developments of the cluster-assembled materials or superatom-bonds.