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Pure Appl. Chem., 1997, Vol. 69, No. 1, pp. 91-96

http://dx.doi.org/10.1351/pac199769010091

Localized triplet diradicals as a probe for electronic substituent effects in benzyl-type radicals: The ΔD scale

W. Adam, H. M. Harrer, F. Kita and W. M. Nau

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  • Abe Manabu: Diradicals. Chem. Rev. 2013, 113, 7011. <http://dx.doi.org/10.1021/cr400056a>
  • Abe Manabu, Ye Jianhuai, Mishima Megumi: The chemistry of localized singlet 1,3-diradicals (biradicals): from putative intermediates to persistent species and unusual molecules with a π-single bonded character. Chemical Society Review 2012, 41, 3808. <http://dx.doi.org/10.1039/c2cs00005a>
  • Neuhaus Patrik, Winkler Michael, Sander Wolfram: EPR spectroscopic and computational characterization of the 2-dehydro-m-xylylene and 4-dehydro-m-xylylene triradicals : DEHYDRO-M-XYLYLENE TRIRADICALS. J  Phys Org Chem 2011, 24, 976. <http://dx.doi.org/10.1002/poc.1911>
  • Wang Yong, Ma Jing, Inagaki Satoshi: Stable silicon-centered localized singlet 1,3-diradicals XSi(GeY2)2SiX: theoretical predictions. J Phys Org Chem 2007, 20, 649. <http://dx.doi.org/10.1002/poc.1221>
  • Wang Yong, Ma Jing, Inagaki Satoshi: Theoretical design of singlet localized σ-diradicals: C(MH2)3C (M=Si, Ge, Sn, Pb). Tetrahetron Lett 2005, 46, 5567. <http://dx.doi.org/10.1016/j.tetlet.2005.06.064>
  • Cherkasov Artem R, Jonsson M, Galkin Vladimir I, Cherkasov Rafael A: Correlation analysis in the chemistry of free radicals. RUSS CHEM REV 2001, 70, 1. <http://dx.doi.org/10.1070/RC2001v070n01ABEH000574>