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Charge Transportation and Chirality in Liquid Crystalline Helical Network Phases of Achiral BTBT-Derived Polycatenar Molecules
Authors:Ohjin Kwon  Xiaoqian Cai  Wentao Qu  Feng Liu  Jadwiga Szyd?owska  Ewa Gorecka  Moon Jong Han  Dong Ki Yoon  Silvio Poppe  Carsten Tschierske
Affiliation:1. Institute of Chemistry, Martin Luther University Halle-Wittenberg, 06120 Halle, Germany;2. State Key Laboratory for Mechanical Behaviour of Materials, Shaanxi International Research Center for Soft Matter, Xi'an Jiaotong University, Xi'an, 710049 P. R. China;3. Faculty of Chemistry, University of Warsaw, ul. ?wirkii Wigury 101, Warsaw, 02-089 Poland;4. Graduate School of Nanoscience and Technology, Korea Advanced Institute of Science and Technology, Daejeon, 34141 Republic of Korea
Abstract:First examples of multichain (polycatenar) compounds, based on the π-conjugated 1]benzothieno3,2-b]benzothiophene unit are designed, synthesized, and their soft self-assembly and charge carrier mobility are investigated. These compounds, terminated by the new fan-shaped 2-brominated 3,4,5-trialkoxybenzoate moiety, form bicontinuous cubic liquid crystalline (LC) phases with helical network structure over extremely wide temperature ranges (>200 K), including ambient temperature. Compounds with short chains show an achiral cubic phase with the double network, which upon increasing the chain length, is at first replaced by a tetragonal 3D phase and then by a mirror symmetry is broken triple network cubic phase. In the networks, the capability of bypassing defects provides enhanced charge carrier mobility compared to imperfectly aligned columnar phases, and the charge transportation is non-dispersive, as only rarely observed for LC materials. At the transition to a semicrystalline helical network phase, the conductivity is further enhanced by almost one order of magnitude. In addition, a mirror symmetry broken isotropic liquid phase is formed beside the 3D phases, which upon chain elongation is removed and replaced by a hexagonal columnar LC phase.
Keywords:[1]benzothieno[3  2-b]benzothiophenes  bicontinuous cubic phases  charge transportation  chirality  liquid crystals  mirror symmetry breaking  polycatenar mesogens
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