首页 | 本学科首页   官方微博 | 高级检索  
     检索      

Theoretical Investigation on the Geometries and Properties of Guanine-BX3 (X = F, Cl) Complex
作者姓名:ZHANG  Shi-Guo  LI  Hong  YANG  Pin
作者单位:[1]Department of Chemistry and Chemical Engineering,Institute of Material Chemistry, Binzhou University, Binzhou 256603, China [2]Key Laboratory of Chemical Biology and Molecular Engineering of Ministryof Education, Institute of Molecular Science, Shanxi University, Taiyuan 030006, China
摘    要:Geometries and binding energies were predicted at the B3LYP/6-311+G* level for the guanine-BX3 (X = F, Cl) systems and four isomers with no imaginary frequencies have been obtained for both guanine-BF3 and guanine-BCl3, respectively. Single energy calculations using much larger basis sets (6-311+G(2df,p) and aug-cc-pVDZ were carried out as well. It was found that the most stable isomer of guanine-BF3 is BF3 connected to N3 of guanine with the stabilization energy of –19.93 kcal/mol (BSSE corrected), while that of guanine-BCl3 is BCl3 connected to O10 of guanine having stabilization energy of –15.02 kcal/mol at the same level. The analyses for the combining interaction between BX3 and guanine with the atom-in-molecules theory (AIM) and natural bond orbital (NBO) methods have been performed. The results indicated that all the isomers are formed with σ-p type interactions between guanine and BX3, in which pyridine-type nitrogen or carbonyl oxygen or nitrogen atom of amino group offers its lone pair electrons to the empty p orbital of boron atom and the concomitance of charge transfer from guanine to BX3 has occurred. Still, one or two hydrogen bonds exist in some isomers of guanine-BX3 system and contribute to the stability of complex systems. Frequency analysis suggested that the stretching vibration of BX3 undergoes a red shift in complexes. Guanine-BF3 complex is more stable than guanine-BCl3 although the B–Y (Y=N, O) bond distance in the latter is shorter.

关 键 词:密度泛函理论  分子间相互作用  鸟嘌呤-BF3配合物  鸟嘌呤-BCl3配合物
收稿时间:2006-10-23
修稿时间:2006-10-232007-01-25

Theoretical Investigation on the Geometries and Properties of Guanine-BX3 (X = F, Cl) Complex
ZHANG Shi-Guo LI Hong YANG Pin.Theoretical Investigation on the Geometries and Properties of Guanine-BX3 (X = F, Cl) Complex[J].Chinese Journal of Structural Chemistry,2007,26(7):783-792.
Authors:ZHANG Shi-Guo  LI Hong  YANG Pin
Abstract:Geometries and binding energies were predicted at the B3LYP/6-311 G* level for the guanine-BX3 (X = F, Cl) systems and four isomers with no imaginary frequencies have been obtained for both guanine-BF3 and guanine-BCl3, respectively. Single energy calculations using much larger basis sets (6-311 G(2df,p) and aug-cc-pVDZ were carried out as well. It was found that the most stable isomer of guanine-BF3 is BF3 connected to N3 of guanine with the stabilization energy of -19.93 kcal/mol (BSSE corrected), while that of guanine-BCl3 is BCl3 connected to O10 of guanine having stabilization energy of -15.02 kcal/mol at the same level. The analyses for the combining interaction between BX3 and guanine with the atom-in-molecules theory (AIM) and natural bond orbital (NBO) methods have been performed. The results indicated that all the isomers are formed with σ-p type interactions between guanine and BX3, in which pyridine-type nitrogen or carbonyl oxygen or nitrogen atom of amino group offers its lone pair electrons to the empty p orbital of boron atom and the concomitance of charge transfer from guanine to BX3 has occurred. Still, one or two hydrogen bonds exist in some isomers of guanine-BX3 system and contribute to the stability of complex systems. Frequency analysis suggested that the stretching vibration of BX3 undergoes a red shift in complexes. Guanine-BF3 complex is more stable than guanine-BCl3 although the B-Y (Y=N, O) bond distance in the latter is shorter.
Keywords:density functional theory  intermolecular interaction  guanine-BF3 complex  guanine-BCl3 complex  Properties  Geometries  Investigation  Theoretical  hydrogen bonds  distance  complexes  Frequency  analysis  stretching vibration  red shift  exist  complex systems  stability  carbonyl  oxygen  nitrogen  amino group  lone  pair
本文献已被 CNKI 维普 万方数据 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号