期刊文献+

用分子形貌理论探讨杂环化合物的键长、极化率和芳香性 被引量:1

Molecular face theory being applied to investigate the bond length, polarizability and aromaticity in the heterocyclic compounds
原文传递
导出
摘要 本文使用MELD精密从头计算中的CISD/3-21+G(d,p)方法,计算杂环化合物的单电子所受到的作用势(PAEM)和分子形貌(MF),探讨这些分子的化学键的单电子势垒(Dpb)与各自相应的化学键键长的关系,得出化学键的单电子势垒可以用来表征化学键的强弱;探讨这些分子的杂环内的单电子势垒(Dpr)与分子极化率的关系,可知该势垒可以描述分子的变形性;绘出杂环化合物的分子形貌,计算垂直于分子平面方向上的边界轮廓界面的电子密度,探讨该分子界面电子密度的均匀度与杂环化合物芳香性的关系,进而为杂环芳香化合物的芳香性提出一个定量的标度. Ab initio CISD/3-21+G(d,p) method in MELD package in combination with our own program was used to calculate the potential acting on an electron within a molecule (PAEM) and molecular face (MF). We have investigated the relationship between the single potential barrier (Dpb) of the chemical bonds and their respective bond lengths. It is obtained that the single potential barrier of the chemical bond can be used to characterize the strength of chemical bond. We have explored the correlation between the single potential barrier of the ring (Dpr) and molecular polarizability. It can be shown that the potential barrier can be used to describe the molecular distortion. We have drawn the molecular face of the heterocyclic compounds and calculated the molecular intrinsic characteristic contour and its correspondent electron density. The correlation between the electron density uniformity of molecular boundary and aromaticity of heterocyclic compounds has been studied. Moreover, it can provide us a quantitative scale of describing the aromaticity of heterocyclic compounds.
出处 《中国科学:化学》 CAS CSCD 北大核心 2016年第1期101-113,1-6,共13页 SCIENTIA SINICA Chimica
基金 国家自然科学基金(21133005 21473083)资助
关键词 分子形貌 分子单电子作用势杂环化合物 化学键键长 极化率 芳香性 molecular face, the potential acting on an electron within a molecule (PAEM), heterocyclic compound,bond length, polarizability, aromaticity
  • 相关文献

参考文献8

二级参考文献16

  • 1ZHAO Dongxia,GONG Lidong,YANG Zhongzhi.Exploration of the potential acting on an electron within diatomic molecules[J].Chinese Science Bulletin,2002,47(8):635-640. 被引量:3
  • 2牛淑云,化学学报,1994年,52卷,551页
  • 3杨忠志,Chin Sci Bull,1991年,36卷,964页
  • 4王积涛,张宝申,王永梅,胡青眉.有机化学.天津:南开大学出版社,2003:618,1016.
  • 5Hypercube, Inc, HyperChem Release 7.01 for Windows, Molecular Modeling System, 2000.
  • 6Gaussian 03, Revision 6.0, Frisch M J, Trucks GW, Schlegel HB,Scuseria GE, Robb MA, Cheeseman JR, Montgomery JA, Vreven JrT, Kudin KN, Burant JC, Millam JM, lyengar SS, Tomasi J, Barone V, Mennucci B, Cossi M, Scalmani G, Rega N, Petersson GA,Nakatsuji H, Hada M, Ehara M, Toyota K, Fukuda R, Hasegawa J,lshida M, Nakajima T, Honda Y, Kitao O, Nakai H, Klene M, LiX, Knox JE, Hratchian HP, Cross JB, Adarno C, Jararnillo J,Gomperts R, Stratmann RE, Yazyev O, Austin AJ, Cammi R, Pomelli C, Ochterski JW, Ayala PY, Morokuma K, Voth GA, Salvador P, Dannenberg JJ, Zakrzewski VG, Dappfich S, Daniels AD, Strain MC, Farkas O, Malick DK, Rabuck AD, Raghavachari K, Foresman JB, Ortiz JV, Cui Q, Baboul AG, Clifford S, Cioslowski J, Stefanov BB, Liu G, Liashenko A, Piskorz P, Komaromi I, Martin RL, Fox DJ, Keith T, Al-Laham MA, Peng CY, Nanayakkara A, Challacombe M, Gill PMW, Johnson B, Chen W, Wong MW, Gonzalez C,Pople JA. Gaussian, Inc, Pittsburgh PA, 2003.
  • 7Paul W. Ayers.Strategies for computing chemical reactivity indices[J].Theoretical Chemistry Accounts.2001(4)
  • 8Dongxia Zhao,Zhongzhi Yang.Theory on the molecular characteristic contour (I)[J].Science in China Series B: Chemistry.1999(4)
  • 9Slater,J. C.A simplification of the Hartree-Fock method, Phys[].Review.1951
  • 10Partridge,H. J.Near Hartree-Fock quality GTO basis sets for the second-row atoms, J[].The Journal of Chemical Physics.1987

共引文献16

同被引文献20

引证文献1

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部