One-Pot Synthesis of Cu(II) Complex with Partially Oxidized TTF Moieties

The one-pot synthesis of a Cu(II) complex with partially oxidized tetrathiafulvalene (TTF) moieties in its capping MT-Hsae-TTF ligands, [CuII(MT-sae-TTF)2] [CuICl2] was realized by the simultaneous occurrence of Cu(II) complexation and CuIICl2 mediated oxidation of TTF moieties. The crystal structur...

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Main Authors: Hiroki Oshio, Takuya Shiga, Kiyotaka Mitsumoto, Ryosuke Kitabatake, Hiroyuki Nishikawa
Format: Article
Language:English
Published: MDPI AG 2012-07-01
Series:Crystals
Subjects:
Online Access:http://www.mdpi.com/2073-4352/2/3/935
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author Hiroki Oshio
Takuya Shiga
Kiyotaka Mitsumoto
Ryosuke Kitabatake
Hiroyuki Nishikawa
author_facet Hiroki Oshio
Takuya Shiga
Kiyotaka Mitsumoto
Ryosuke Kitabatake
Hiroyuki Nishikawa
author_sort Hiroki Oshio
collection DOAJ
description The one-pot synthesis of a Cu(II) complex with partially oxidized tetrathiafulvalene (TTF) moieties in its capping MT-Hsae-TTF ligands, [CuII(MT-sae-TTF)2] [CuICl2] was realized by the simultaneous occurrence of Cu(II) complexation and CuIICl2 mediated oxidation of TTF moieties. The crystal structure was composed of one-dimensional columns formed by partially oxidized TTF moieties and thus the cation radical salt showed relatively high electrical conductivity. Tight binding band structure calculations indicated the existence of a Peierls gap due to the tetramerization of the TTF moieties in the one-dimensional stacking column at room temperature, which is consistent with the semiconducting behavior of this salt.
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spelling doaj.art-113b125dc53641c3b5991ca314ddecfc2022-12-22T02:18:08ZengMDPI AGCrystals2073-43522012-07-012393594510.3390/cryst2030935One-Pot Synthesis of Cu(II) Complex with Partially Oxidized TTF MoietiesHiroki OshioTakuya ShigaKiyotaka MitsumotoRyosuke KitabatakeHiroyuki NishikawaThe one-pot synthesis of a Cu(II) complex with partially oxidized tetrathiafulvalene (TTF) moieties in its capping MT-Hsae-TTF ligands, [CuII(MT-sae-TTF)2] [CuICl2] was realized by the simultaneous occurrence of Cu(II) complexation and CuIICl2 mediated oxidation of TTF moieties. The crystal structure was composed of one-dimensional columns formed by partially oxidized TTF moieties and thus the cation radical salt showed relatively high electrical conductivity. Tight binding band structure calculations indicated the existence of a Peierls gap due to the tetramerization of the TTF moieties in the one-dimensional stacking column at room temperature, which is consistent with the semiconducting behavior of this salt.http://www.mdpi.com/2073-4352/2/3/935TTF-based metal complexSchiff base-type TTF-ligandpartial oxidation of TTFone-pot synthesiselectrical conductivityπ-d interaction
spellingShingle Hiroki Oshio
Takuya Shiga
Kiyotaka Mitsumoto
Ryosuke Kitabatake
Hiroyuki Nishikawa
One-Pot Synthesis of Cu(II) Complex with Partially Oxidized TTF Moieties
Crystals
TTF-based metal complex
Schiff base-type TTF-ligand
partial oxidation of TTF
one-pot synthesis
electrical conductivity
π-d interaction
title One-Pot Synthesis of Cu(II) Complex with Partially Oxidized TTF Moieties
title_full One-Pot Synthesis of Cu(II) Complex with Partially Oxidized TTF Moieties
title_fullStr One-Pot Synthesis of Cu(II) Complex with Partially Oxidized TTF Moieties
title_full_unstemmed One-Pot Synthesis of Cu(II) Complex with Partially Oxidized TTF Moieties
title_short One-Pot Synthesis of Cu(II) Complex with Partially Oxidized TTF Moieties
title_sort one pot synthesis of cu ii complex with partially oxidized ttf moieties
topic TTF-based metal complex
Schiff base-type TTF-ligand
partial oxidation of TTF
one-pot synthesis
electrical conductivity
π-d interaction
url http://www.mdpi.com/2073-4352/2/3/935
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