High-spin binuclear cyclopentadienyliron chlorides: a density functional theory study.

Congzhi Wang, Xiuhui Zhang, Yang Bai, Fengxin Gao, Qianshu Li
Author Information
  1. Congzhi Wang: Key Laboratory of Cluster Science, Ministry of Education of China, School of Chemistry, Beijing Institute of Technology, Beijing 100081, People's Republic of China.

Abstract

Theoretical studies on the cyclopentadienyliron chlorides Cp2Fe2Cl(n) (n = 6 - 1) with iron in the formal oxidation states from +1 to +4 indicate that all the high-spin species are predicted to be the lowest energy structures and they are paramagnetic complexes with magnetic moments between 2.8μ(B) and 5.9μ(B). The mixed oxidation state derivatives with odd number of chloride atoms have larger magnetic moments than other species. In addition to Cp2Fe2Cl, which has the largest magnetic moment, these high-spin species have terminal Cp rings and bridging Cl atoms up to a maximum of two bridges. The Cp2Fe2Cl4, Cp2Fe2Cl3 and Cp2Fe2Cl2 derivatives are predicted to be thermodynamically stable molecules with respect to exothermic reactions for the loss of one Cl atom from Cp2Fe2Cl n . Moreover, the lowest energy Cp2Fe2Cl(n) (n = 3, 4) derivatives can be derived by the oxidative addition reactions of Cp2Fe2Cl(n-2) + Cl2 → Cp2Fe2Cl(n).

References

  1. J Chem Theory Comput. 2007 Jul;3(4):1580-7 [PMID: 26633228]
  2. Science. 2011 Feb 25;331(6020):1049-52 [PMID: 21350172]
  3. J Chem Theory Comput. 2006 Sep;2(5):1282-90 [PMID: 26626836]
  4. Phys Rev B Condens Matter. 1988 Jan 15;37(2):785-789 [PMID: 9944570]
  5. Phys Rev B Condens Matter. 1986 Jun 15;33(12):8822-8824 [PMID: 9938299]
  6. Phys Rev A Gen Phys. 1988 Sep 15;38(6):3098-3100 [PMID: 9900728]
  7. Chem Rev. 2000 Feb 9;100(2):353-406 [PMID: 11749240]
  8. J Chem Phys. 2006 May 14;124(18):184102 [PMID: 16709092]
  9. Phys Chem Chem Phys. 2006 Jan 7;8(1):93-100 [PMID: 16482248]

Word Cloud

Created with Highcharts 10.0.0Cp2Fe2Clnspeciesmagneticderivativescyclopentadienylironoxidationhigh-spinpredictedlowestenergymomentsBatomsadditionClreactionsTheoreticalstudieschloridesn = 6 - 1ironformalstates+1+4indicatestructuresparamagneticcomplexes25mixedstateoddnumberchloridelargerlargestmomentterminalCpringsbridgingmaximumtwobridgesCp2Fe2Cl4Cp2Fe2Cl3Cp2Fe2Cl2thermodynamicallystablemoleculesrespectexothermiclossoneatomMoreovern = 34canderivedoxidativen-2+Cl2High-spinbinuclearchlorides:densityfunctionaltheorystudy

Similar Articles

Cited By