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Two New Families of Charge Transfer Solids Based on [M(mnt)2]n− and the Donors BMDT-TTF and EDT-TTF: Conducting and Magnetic Properties
- Source :
- Journal of Solid State Chemistry. 168:563-572
- Publication Year :
- 2002
- Publisher :
- Elsevier BV, 2002.
-
Abstract
- Two new families of charge transfer solids based on transition metal bis-maleonitrile dithiolate complexes [M(mnt)2]n− and two tetrathiatulvalene (TTF) derivatives containing external sulfur atoms have been synthesized and characterized as (BMDT-TTF)2[M(mnt)2] and (EDT-TTF)[M(mnt)2], where BMDT-TTF stands for bis(methylenedithio)-tetrathiafulvalene, EDT-TTF for ethylenedithio-tetrathiafulvalene and M=Au, Pt and Ni. The salts of the series (BMDT-TTF)2[M(mnt)2] are quasi-isostructural and crystallize forming mixed ADDA stacks along a+b. In the (BMDT-TTF)2[Au(mnt)2] salt, the anion complex is diamagnetic and has a formal charge of −1, whereas in Ni salt the anion has a charge of −2, being also diamagnetic. The magnetic properties of the Au salt follow a 1D antiferromagnetic Heisenberg model modified with a molecular field. The salt with Ni displays very strong antiferromagnetic interactions. The (EDT-TTF)[M(mnt)2] salts with M=Ni and Pt are isostructural and crystallize forming alternated DADA stacks. The anions, with a formal charge of −1, are paramagnetic with a spin 1 2 ;. Their magnetic susceptibility can be successfully simulated within the antiferromagnetic uniform chain model of Heisenberg. Lastly, (EDT-TTF)[Au(mnt)2] crystallizes in the triclinic space group P(-1) forming also alternated stacks along c in which the EDT-TTF molecules are 50% disordered.
- Subjects :
- Heisenberg model
Chemistry
Inorganic chemistry
Formal charge
Crystal structure
Condensed Matter Physics
Magnetic susceptibility
Electronic, Optical and Magnetic Materials
Inorganic Chemistry
Paramagnetism
Crystallography
Transition metal
Materials Chemistry
Ceramics and Composites
Antiferromagnetism
Physical and Theoretical Chemistry
Isostructural
Subjects
Details
- ISSN :
- 00224596
- Volume :
- 168
- Database :
- OpenAIRE
- Journal :
- Journal of Solid State Chemistry
- Accession number :
- edsair.doi...........71e1c986d287e5963239fc9129866335
- Full Text :
- https://doi.org/10.1006/jssc.2002.9753