Issue 22, 2011

Redox-active tubular frameworks with TTF: self-assemblies by complementary hydrogen-bonds and π-stacks of TTF-phenyluracil

Abstract

Tubular frameworks of a tetrathiafulvalene (TTF) based electron-donor with a N1-phenyluracil moiety were constructed by strong self-assembling abilities. The uracil moiety formed the reversed Watson–Crick type hydrogen-bond pair. The TTF moiety exhibited C–H⋯X hydrogen-bonds, S⋯S interactions, and uniform π-stack. The phenyl group formed a herring-bone array by the edge-to-face interaction. These multiple intermolecular interactions established channels of ca. 4 × 8 Å. The cavities were filled with crystalline solvent molecules (tetrahydrofuran and pyridine), which were fixed on the framework by the C–H⋯X hydrogen-bonds.

Graphical abstract: Redox-active tubular frameworks with TTF: self-assemblies by complementary hydrogen-bonds and π-stacks of TTF-phenyluracil

Supplementary files

Article information

Article type
Paper
Submitted
25 Jun 2011
Accepted
19 Aug 2011
First published
21 Sep 2011

CrystEngComm, 2011,13, 6880-6884

Redox-active tubular frameworks with TTF: self-assemblies by complementary hydrogen-bonds and π-stacks of TTF-phenyluracil

T. Murata, S. Maki, M. Ohmoto, E. Miyazaki, Y. Umemoto, K. Nakasuji and Y. Morita, CrystEngComm, 2011, 13, 6880 DOI: 10.1039/C1CE05794D

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