Benzodithiazolium-Chlorooxomolybdate(V): Darstellung und Kristallstruktur von (C6H4NS2)[MoOCl4] und (C6H4NS2)[MoOCl4·H2O]
作者:Johannes Beck、Michael Koch
DOI:10.1002/zaac.200500393
日期:2006.4
Benzodithiazolium Chlorooxomolybdate(V): Preparation and Crystal Structure of (C6H4NS2)[MoOCl4] and (C6H4NS2)[MoOCl4·H2O] Red benzo-1,3,2-dithiazolium-chlorooxomolybdate(V) (C6H4NS2)[MoOCl4] (1) was obtained by the reaction of benzo-1,3,2-dithiazoliumchloride and molybdenum(V)chloride oxide in dichlormethane under solvothermal conditions at 70 °C. In the presence of small amounts of concentrated hydrochloric
Highly conducting charge transfer complexes of benzo-1,3,2-dithiazol -2yl and its derivatives with teracyanoquinodimethane
作者:Gotthelf Wolmershäuser、Martin Schnauber、Thomas Wilhelm
DOI:10.1039/c39840000573
日期:——
Benzo-1,3,2-dithiazol-2yl and itsderivatives form chargetransfercomplexes with tetracyanoquinodimethane; their powder conductivities are as high as 3Ω–1/cm.
Zibarev, A. V.; Rogoza, A. V.; Konchenko, S. N., Journal of general chemistry of the USSR, 1991, vol. 61, # 2, p. 401 - 404
作者:Zibarev, A. V.、Rogoza, A. V.、Konchenko, S. N.、Fedotov, M. A.、Furin, G. G.
DOI:——
日期:——
Morris, Janet L.; Rees, Charles W., Journal of the Chemical Society. Perkin transactions I, 1987, p. 211 - 216
作者:Morris, Janet L.、Rees, Charles W.
DOI:——
日期:——
[BDTA]<sub>2</sub>[Cu(mnt)<sub>2</sub>]: An Almost Perfect One-Dimensional Magnetic Material
作者:Sarah S. Staniland、Wataru Fujita、Yoshikatsu Umezono、Kunio Awaga、Philip J. Camp、Stewart J. Clark、Neil Robertson
DOI:10.1021/ic048479+
日期:2005.2.1
[BDTA](2)[Cu(mnt)(2)] (BDTA = benzo-1,3,2-dithiazolyl, mnt = maleonitriledithiolate) was crystallized in the space group P1 with an inversion center on Cu giving a stacked structure with each metal complex anion sandwiched by two cations. Short intermolecular S...S contacts give rise to a one-dimensional chain lateral to the stacking axis. Variable-temperature magnetic susceptibility and EPR measurements indicate that the salt behaves as an ideal one-dimensional Heisenberg antiferromagnetic material from 2 K less than or equal to T less than or equal to 300 K, with a coupling constant of J/k(B) = 16-17 K; the very low temperature magnetic properties are in quantitative agreement with the predictions of quantum field theory. DFT calculations are consistent with the formation of a one-dimensional magnetic chain with interstack interactions mediated by the BDTA counterions.