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  A soluble equivalent of the supramolecular, quasi-one- dimensional, semiconducting Magnus' green salt

Fontana, M., Chanzy, H., Caseri, W. R., Smith, P., Schenning, A. P. H. J., Meijer, E. W., et al. (2002). A soluble equivalent of the supramolecular, quasi-one- dimensional, semiconducting Magnus' green salt. Chemistry of Materials, 14(4), 1730-1735.

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Fontana, M., Author
Chanzy, H., Author
Caseri, W. R., Author
Smith, P., Author
Schenning, A. P. H. J., Author
Meijer, E. W., Author
Gröhn, Franziska1, Author           
Affiliations:
1MPI for Polymer Research, Max Planck Society, ou_1309545              

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 Abstract: A soluble supramolecular, quasi-one-dimensional semiconducting complex comprising alternately stacked [Pt(NH(2)dmoc)(4)](2+) and [PtCl4](2-) units, where dmoc denotes (S)-3,7- dimethyloctyl, has been synthesized and characterized with various methods. In contrast to earlier enunciated expectations and unlike nearly all other known derivatives, [Pt(NH2dmoc)41 [PtCl4] showed the color of Magnus' green salt, [Pt(NH3)(4)] [PtCl4], which is characteristic for linearly arranged platinum atoms with considerable Pt-Pt interactions. The Pt-Pt distance in [Pt(NH(2)dmoc)(4)] [PtCl4] was established to be 3.1 Angstrom from powder X-ray and electron diffraction patterns. Similar to Magnus' green salt, [Pt(NH(2)dmoc)(4)] [PtCl4] was found to be a semiconductor with a thermal activation energy of 0.24 eV and an electrical conductivity of 1.6 x 10(-7) S/cm at room temperature, Although Magnus' green salt virtually is intractable, [Pt(NH(2)dmoc)(4)] [PtCl4] was soluble in common organic solvents. Remarkably, strong evidence indicated that self-assembled platinum chain structures were present also in solution. Hence, [Pt(NH(2)dmoc)(4)][PtCl4] may indeed be regarded as a processible form of Magnus' green salt.

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Language(s): eng - English
 Dates: 2002-04
 Publication Status: Issued
 Pages: -
 Publishing info: -
 Table of Contents: -
 Rev. Type: No review
 Identifiers: eDoc: 28510
ISI: 000175028700041
 Degree: -

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Title: Chemistry of Materials
  Alternative Title : Chem. Mat.
Source Genre: Journal
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Pages: - Volume / Issue: 14 (4) Sequence Number: - Start / End Page: 1730 - 1735 Identifier: ISSN: 0897-4756