Isothermal Phase Transitions in Liquid Crystals Driven by Dynamic Covalent Chemistry

Author:

Martínez Daniel1,Schlossarek Tim2,Würthner Frank2ORCID,Soberats Bartolome1ORCID

Affiliation:

1. Department of Chemistry Universitat de les Illes Balears Cra. Valldemossa, Km. 7.5 07122 Palma de Mallorca Spain

2. Institut für Organische Chemie Center for Nanosystems Chemistry (CNC) and Bavarian Polymer Institute (BPI) Universität Würzburg Am Hubland 97074 Würzburg Germany

Abstract

AbstractThe dynamic nature of calamitic liquid crystals is exploited to perform isothermal phase transitions driven by dynamic covalent chemistry. For this purpose, nematic (N) arrays based on aldehyde 1 were treated with different amines (AE) in an on‐surface process, which resulted in different isothermal phase transitions. These phase transformations were caused by in situ imination reactions and are dependent on the nature of the added amine. Transitions from the N to crystal (1A, 1E), isotropic (1B), and smectic (Sm) (1C, 1D) phases were achieved, while the resulting materials feature thermotropic liquid crystal behavior. A sequential transformation from the N 1 to the Sm 1C and then to the N 1B was achieved by coupling an imination to a transimination processes and adjusting the temperature. All of these processes were well characterized by microscopic, spectroscopic, and X‐ray techniques, unlocking not only the constitutional but also the structural aspects of the phase transitions. This work provides new insights into designing constitutionally and structurally adaptable liquid crystal systems, paving the way toward the conception of programable evolutive pathways and adaptive materials.

Funder

Ministerio de Ciencia e Innovación

Bayerisches Staatsministerium für Bildung und Kultus, Wissenschaft und Kunst

Govern de les Illes Balears

Publisher

Wiley

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