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Theoretical Design of High-spin Organic Molecules with Heterocycles as Ferromagnetic Coupling Units
作者姓名:WANG Li-min  ZHANG Jing-ping and WANG Rong-shun ** Faculty of Chemistry  Northeast Normal University  Changchun  P. R. China
作者单位:WANG Li-min,ZHANG Jing-ping and WANG Rong-shun ** Faculty of Chemistry,Northeast Normal University,Changchun 130024,P. R. China
基金项目:Supported by the National Natural Science Foundation of China( No.2 980 4 0 0 2,2 0 2 74 0 0 6 ) ,FokYingTungEducationFoundation( No.710 13) and Foundation of Northeast Normal University( No.1114 34)
摘    要:IntroductionThe design and the syntheses of organicmolecules with very high- spin ground states havebeen a topic of great interest1— 5] .One of rationalapproaches to designing high- spin molecules,which has been proposed and studied by severalgroups6,7] ,consists in conceptually dividing themolecules into two components,i.e.,a spin- con-taining( SC) fragment which provides the unpairedelectron and a ferromagnetic coupling ( FC) unitwhich is connected with radical centers ferromag-netically…

关 键 词:理论设计  高自旋有机分子  杂环化合物  铁磁体  耦合单元  AM1-CI  B3LYP  二价自由基
收稿时间:2002-10-21

Theoretical Design of High-spin Organic Molecules with Heterocycles as Ferromagnetic Coupling Units
WANG Li-min,ZHANG Jing-ping and WANG Rong-shun ** Faculty of Chemistry,Northeast Normal University,Changchun ,P. R. China.Theoretical Design of High-spin Organic Molecules with Heterocycles as Ferromagnetic Coupling Units[J].Chemical Research in Chinese University,2003,19(4):508-511.
Authors:WANG Li-min  ZHANG Jing-ping  WANG Rong-shun
Institution:Faculty of Chemistry, Northeast Normal University, Changchun 130024, P. R. China
Abstract:Novel stable high spin molecules possessing three different arranged fashions are designed with -*N-N< as a spin-containing(SC) fragment, phenylene as an end group and various aromatic molecules, such as benzene(1), 2,6-pyridine(2), 3,5-pyridine(3), pyridazine(4), 4,6-pyrimidine(5), 2,6-pyrimidine(6), pyrazine(7) and triazine(8), as a ferromagnetic coupling(FC) unit. The effects of the different coupling units on the spin multiplicities of the ground states and their stabilities were investigated by means of AM1-CI approach. It has been found that the spin densities on the two atoms of the SC fragment are different from delocalization results in the specific stability of -*N-N<. In these molecules, the stabilities of the triplet states decrease when the distance between the atoms of central SC(-N-) increases. It is shown that the heterocycles as the coupling units have influence on the stabilities of the high-spin ground states. That the heteroatom lying in m-phenyl can improve ferromagnetic coupling, while the heteroatom lying in o-phenyl or p-phenyl is not in favor of the ferromagnetic coupling.
Keywords:Heterocycle  Coupling unit  Biradical  High-spin  AM1-CI  B3LYP
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