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Synthesis,mesomorphic behaviour and optoelectronic properties of phosphorus-based thermotropic liquid crystalline dendrimers
Authors:A Iwan  H Janeczek  M Domanski  P Rannou
Institution:1. Electrotechnical Institute, Division of Electrotechnology and Materials Science , M. Sklodowskiej–Curie 55/61 Street, 50–369, Wroclaw, Poland;2. Laboratoire d'Electronique Moléculaire, Organique et Hybride, UMR5819–SPrAM (CEA–CNRS–Univ. J. FOURIER–Grenoble I), Institut Nanosciences et Cryogénie (INAC) , CEA–Grenoble, 17 rue des Martyrs, 38054, Grenoble Cédex 9, France a.iwan@iel.wroc.pl;4. Centre of Polymer and Carbon Materials, Polish Academy of Sciences , M. Sklodowskiej–Curie 34 Street, 41–819, Zabrze, Poland;5. Laboratoire d'Electronique Moléculaire, Organique et Hybride, UMR5819–SPrAM (CEA–CNRS–Univ. J. FOURIER–Grenoble I), Institut Nanosciences et Cryogénie (INAC) , CEA–Grenoble, 17 rue des Martyrs, 38054, Grenoble Cédex 9, France
Abstract:A new series of thermotropic phosphorus-based liquid crystalline (LC) dendrimers based on a thiophosphoryl-phenoxymethyl(methylhydrazono) core (thiophosphoryl-PMMH) up to the fifth generation has been synthesised by solution condensation of aldehyde groups, surface-functionalised thiophosphoryl-PMMH dendritic substrates of generation numbers G0.5 to G5.5, with the appropriate molar equivalents of the pro-mesogenic n-hexadecylaniline mono-functional building block. Their chemical composition has been confirmed by 1H/13C/31P nuclear magnetic resonance spectroscopy, Fourier transform infrared spectroscopy, elemental analysis. Optical properties have been studied by ultraviolet-visible absorption, photoluminescence spectroscopy and polarised optical microscopy, and thermal characteristics by differential scanning calorimetry. Electrical studies have been made using the current-voltage characteristics of organic light-emitting diodes consisting of multi-layered indium tin oxide/dendrimer/aluminium tris(8-hydroxyquinoline)Al architecture. It has been demonstrated that the molecular engineering approach adopted can successfully lead to phosphorus-containing dendritic organic semiconductors (OSCs) which show tunable mesomorphic behaviour (extension of the observed smectic mesophase) and (opto) electronic properties, owing to their peripheral decoration with a tunable number of azomethine-based optically active chromophoric units. This rare combination of ‘tunable by design’ properties makes this series of thermostable thiophosphoryl-PMMH-based LC dendrimers a particularly appealing class of OSCs for use in optically and/or electronically active layers of (opto)electronic devices such as light-emitting diodes, field-effect transistors, solar cells and lasers.
Keywords:phosphorus dendrimers  liquid crystalline dendrimers  azomethines  hole transporting materials
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