Effect of configuration and conformation on the spin multiplicity in xylylene type biradicals


Autoria(s): Zhang JP; Zhang H; Wang LM; Wang RS; Wang LX
Data(s)

2000

Resumo

The singlet-triplet splitting energy gap DeltaE(S.T) = E-S - E-T is calculated for the ortho-, meta-, and para-xylylenes and their heteroatomic analogous by means of AM1-CI approach. It is shown that when the radical centers R-.(R-.=H2C.-,H2N.+- or HN.-) are twisted sufficiently Tar out of conjugation with the benzene ring, DeltaE(S.T) tends to zero or is negative, i.e, ortho-, meta-, and para-phenylenes turn into weak ferromagnetic or antiferromagnetic coupling unit, while they are strong ferromagnetic (meta-isomers) or antiferromagnetic (ortho-, para-isomers) coupling units under planar conformation. It is suggested that serious twisted conformation is not recommended candidate for the design of novel high-spin molecules with stable high-spin ground states by ortho- or para-phenylene coupling unit.

Identificador

http://202.98.16.49/handle/322003/19473

http://www.irgrid.ac.cn/handle/1471x/154471

Idioma(s)

英语

Fonte

Zhang JP;Zhang H;Wang LM;Wang RS;Wang LX.Effect of configuration and conformation on the spin multiplicity in xylylene type biradicals,SCIENCE IN CHINA SERIES B-CHEMISTRY,2000,43(5):524-530

Palavras-Chave #GROUND-STATE #COUPLING UNIT #ORGANIC-MOLECULES #M-PHENYLENE #DESIGN #DIRADICALS #VIOLATION #MAGNETISM #TRIAZINE #BONDS
Tipo

期刊论文