Co-reporter:Dr. Shigeaki Nakazawa;Dr. Shinsuke Nishida;Dr. Tomoaki Ise;Dr. Tomohiro Yoshino;Dr. Nobuyuki Mori;Dr. Robabeh D. Rahimi;Dr. Kazunobu Sato;Dr. Yasushi Morita;Dr. Kazuo Toyota;Dr. Daisuke Shiomi;Dr. Masahiro Kitagawa;Dr. Hideyuki Hara;Dr. Patrick Carl;Dr. Peter Höfer;Dr. Takeji Takui
Angewandte Chemie International Edition 2012 Volume 51( Issue 39) pp:9860-9864
Publication Date(Web):
DOI:10.1002/anie.201204489
Co-reporter:Dr. Shigeaki Nakazawa;Dr. Shinsuke Nishida;Dr. Tomoaki Ise;Dr. Tomohiro Yoshino;Dr. Nobuyuki Mori;Dr. Robabeh D. Rahimi;Dr. Kazunobu Sato;Dr. Yasushi Morita;Dr. Kazuo Toyota;Dr. Daisuke Shiomi;Dr. Masahiro Kitagawa;Dr. Hideyuki Hara;Dr. Patrick Carl;Dr. Peter Höfer;Dr. Takeji Takui
Angewandte Chemie 2012 Volume 124( Issue 39) pp:9998-10002
Publication Date(Web):
DOI:10.1002/ange.201204489
Co-reporter:Shigeaki Nakazawa, Kazunobu Sato, Daisuke Shiomi, Masafumi Yano, Takamasa Kinoshita, Maria Luisa T. M. B. Franco, Maria Celina R. L. R. Lazana, Maria Candida B. L. Shohoji, The late Koichi Itoh and Takeji Takui
Physical Chemistry Chemical Physics 2011 vol. 13(Issue 4) pp:1424-1433
Publication Date(Web):22 Nov 2010
DOI:10.1039/C0CP00730G
Trianionic spin-quartet and tetraanionic spin-quintet molecular clusters derived from m-dibenzoylbenzene in solution were identified by CW-ESR/pulse-ESR based two-dimensional electron spin transient nutation spectroscopy, and their spin and clustering structures in the ground state were determined in terms of a D-tensor based phenomenological approach and DFT calculations. The molecular structures obtained semiempirically are supported by DFT-based quantum chemical calculations. The DFT calculations have been tested for a sodium ion bridged fluorenone-based cluster, [fluorenone−˙ {Na+(dme)2}]2, whose crystal structure was reported in the literature [H. Bock, H.-F. Herrmann, D. Fenske and H. Goesmann, Angew. Chem., Int. Ed. Engl., 1988, 27, 1067], reproducing the experimentally determined moelcular structure of the dimer cluster. It is suggested that both the quartet and quintet clusters in the 2-MTHF glass and solution form the cross-typed structures with the two m-dibenzoylbenzene moieties in cis-configuration. A dianionic spin-triplet m-dibenzoylbenzene derivative was detected for the first time and its charge and spin densities were studied by the quantum chemical calculations. The high-spin states of the open-shell entities under study were confirmed by X-band pulse-ESR based electron spin nutation spectroscopy in organic frozen glasses. The D values and other spin Hamiltonian parameters of all the polyanionic high-spin species were determined by the hybrid eigenfield spectral simulation for fine-structure ESR spectra. m-Dibenzoylbenzene provides pseudo-degenerate π-LUMOs arising from its topological symmetry of the π-electron network and its dianion in the triplet ground state is a prototypical model for topologically-controlled genuinely organic ferromagnetic metals.
Co-reporter:Shigeaki Nakazawa, Kazunobu Sato, Daisuke Shiomi, Masafumi Yano, Takamasa Kinoshita, Maria Luisa T. M. B. Franco, Maria Celina R. L. R. Lazana, Maria Candida B. L. Shohoji, The late Koichi Itoh and Takeji Takui
Physical Chemistry Chemical Physics 2011 - vol. 13(Issue 4) pp:NaN1433-1433
Publication Date(Web):2010/11/22
DOI:10.1039/C0CP00730G
Trianionic spin-quartet and tetraanionic spin-quintet molecular clusters derived from m-dibenzoylbenzene in solution were identified by CW-ESR/pulse-ESR based two-dimensional electron spin transient nutation spectroscopy, and their spin and clustering structures in the ground state were determined in terms of a D-tensor based phenomenological approach and DFT calculations. The molecular structures obtained semiempirically are supported by DFT-based quantum chemical calculations. The DFT calculations have been tested for a sodium ion bridged fluorenone-based cluster, [fluorenone−˙ {Na+(dme)2}]2, whose crystal structure was reported in the literature [H. Bock, H.-F. Herrmann, D. Fenske and H. Goesmann, Angew. Chem., Int. Ed. Engl., 1988, 27, 1067], reproducing the experimentally determined moelcular structure of the dimer cluster. It is suggested that both the quartet and quintet clusters in the 2-MTHF glass and solution form the cross-typed structures with the two m-dibenzoylbenzene moieties in cis-configuration. A dianionic spin-triplet m-dibenzoylbenzene derivative was detected for the first time and its charge and spin densities were studied by the quantum chemical calculations. The high-spin states of the open-shell entities under study were confirmed by X-band pulse-ESR based electron spin nutation spectroscopy in organic frozen glasses. The D values and other spin Hamiltonian parameters of all the polyanionic high-spin species were determined by the hybrid eigenfield spectral simulation for fine-structure ESR spectra. m-Dibenzoylbenzene provides pseudo-degenerate π-LUMOs arising from its topological symmetry of the π-electron network and its dianion in the triplet ground state is a prototypical model for topologically-controlled genuinely organic ferromagnetic metals.