The title charge-transfer (CT) complex, C10H2O6·C14H8S4, composed of donor dibenzotetrathiafulvalene (DBTTF) and acceptor pyromellitic dianhydride (PMDA), forms a mixed stacking pattern along the [-110] direction. The constituent molecules occupy crystallographic inversion centers. They are nearly parallel and lie ca.3.41 Å from each other. The crystals exhibit a high degree of donor/acceptor overlap [88.20 (4)%] in the long direction of the DBTTF and PMDA molecules as compared with 51.27 (5)% in the shortest direction of the molecules
A set of three new binary-component charge transfer (CT) complexes (<b>Ia</b>, <b>Ib</b>, and <b>Ic<...
In the spirit of the renewed interest in mixed stack charge-transfer (CT) crystals, made up by alter...
The reaction of 1-aminoanthraquinone with 7,7′,8,8′-tetracyanoquinodimethane yielded the...
R factor = 0.032; wR factor = 0.091; data-to-parameter ratio = 19.6. The title charge-transfer (CT) ...
The title compound, 2C14H12S·C12N4F4, was obtained by using 4,6-dimethyldibenzothiophene (DMDBT) as ...
Four binary charge-transfer complexes were made using pyromellitic acid dianhydride (pmda), those be...
We report extensive structural and spectroscopic characterization of four mixed stack chargetransfer...
Crystals of the title compound (DBTTF), C14H8S4, feature a triclinic polymorph different from two kn...
Two 1:1 charge-transfer organic complexes were formed using tetrathiafulvalene as a donor and a 9H-f...
A compact and planar donor-acceptor molecule 1 comprising tetrathiafulvalene (TTF) and benzothiadiaz...
Biphenylene:tetracyanobenzene (BPN:TCNB), C12H8:C10H2N4, crystallizes in a monoclinic lattice, space...
© 2017 American Chemical Society. The donor-acceptor interface within molecular charge transfer (CT)...
Charge-transfer crystals exhibit unique electronic and magnetic properties with interesting applicat...
A compact and planar donor–acceptor molecule 1 comprising tetrathiafulvalene (TTF) and benzothiadiaz...
The crystal structures of four charge-transfer complexes and two organo-metallic compounds have been...
A set of three new binary-component charge transfer (CT) complexes (<b>Ia</b>, <b>Ib</b>, and <b>Ic<...
In the spirit of the renewed interest in mixed stack charge-transfer (CT) crystals, made up by alter...
The reaction of 1-aminoanthraquinone with 7,7′,8,8′-tetracyanoquinodimethane yielded the...
R factor = 0.032; wR factor = 0.091; data-to-parameter ratio = 19.6. The title charge-transfer (CT) ...
The title compound, 2C14H12S·C12N4F4, was obtained by using 4,6-dimethyldibenzothiophene (DMDBT) as ...
Four binary charge-transfer complexes were made using pyromellitic acid dianhydride (pmda), those be...
We report extensive structural and spectroscopic characterization of four mixed stack chargetransfer...
Crystals of the title compound (DBTTF), C14H8S4, feature a triclinic polymorph different from two kn...
Two 1:1 charge-transfer organic complexes were formed using tetrathiafulvalene as a donor and a 9H-f...
A compact and planar donor-acceptor molecule 1 comprising tetrathiafulvalene (TTF) and benzothiadiaz...
Biphenylene:tetracyanobenzene (BPN:TCNB), C12H8:C10H2N4, crystallizes in a monoclinic lattice, space...
© 2017 American Chemical Society. The donor-acceptor interface within molecular charge transfer (CT)...
Charge-transfer crystals exhibit unique electronic and magnetic properties with interesting applicat...
A compact and planar donor–acceptor molecule 1 comprising tetrathiafulvalene (TTF) and benzothiadiaz...
The crystal structures of four charge-transfer complexes and two organo-metallic compounds have been...
A set of three new binary-component charge transfer (CT) complexes (<b>Ia</b>, <b>Ib</b>, and <b>Ic<...
In the spirit of the renewed interest in mixed stack charge-transfer (CT) crystals, made up by alter...
The reaction of 1-aminoanthraquinone with 7,7′,8,8′-tetracyanoquinodimethane yielded the...