Hydrophilic Cocrystals with Water Switched Luminescence

Author:

Gao Lei12,Baryshnikov Glib V.34,Ali Amjad3,Kuklin Artem5,Qian Cheng1,Zhang Xianrui2,Chen Fengkun1,Yi Tao1,Wu Hongwei1ORCID

Affiliation:

1. State Key Laboratory for Modification of Chemical Fibers and Polymer Materials Science and Technology of Eco-Textile Ministry of Education College of Chemistry and Chemical Engineering Donghua University Shanghai 201620 China

2. College of Food and Pharmaceutical Engineering Wuzhou University Wuzhou 543000 P. R. China

3. Laboratory of Organic Electronics Department of Science and Technology Linköping University 60174 Norrköping Sweden

4. Department of Chemistry and Nanomaterials Science Bohdan Khmelnytsky National University 18031 Cherkasy Ukraine

5. Division of X-ray Photon Science Department of Physics and Astronomy Uppsala University Box 516 75120 Uppsala Sweden

Abstract

AbstractUtilizing water molecules to regulate the luminescence properties of solid materials is highly challenging. Herein, we develop a strategy to produce water‐triggered luminescence‐switching cocrystals by coassembling hydrophilic donors with electron‐deficient acceptors, where 1,2,4,5‐Tetracyanobenzene (TCNB) was used as the electron acceptor and pyridyl benzimidazole derivatives were used as the electron donors enabling multiple hydrogen‐bonds. Two cocrystals, namely 2PYTC and 4PYTC were obtained and showed heat‐activated emission, and such emission could be quenched or weakened by adding water molecules. The cocrystal structure exhibited the donor molecule that can form multiple hydro bonds with water and acceptor molecules due to the many nitrogen atoms of them. The analyses of the photophysical data, powder X‐ray diffraction, and other data confirmed the reversible fluorescence “on‐off” effects were caused by eliminating and adding water molecules in the crystal lattice. The density functional theory calculations indicate that the vibration of the O‐H bond of water molecules in the cocrystal can absorb the excitation energy and suppress fluorescence. Furthermore, the obtained cocrystals also showed temperature, humidity, and H+/NH4+ responsive emission behavior, which allows their applications as thermal and humidity sensors, and multiple information encryptions. This research paves the way for preparing intelligent hydrophilic organic cocrystal luminescent materials.

Funder

National Natural Science Foundation of China

Fundamental Research Funds for Central Universities of the Central South University

Vetenskapsrådet

Carl Tryggers Stiftelse för Vetenskaplig Forskning

Publisher

Wiley

Subject

General Medicine

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