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Preparation and Regulation of Temperature-Sensitive Organogel for Temperature-Controlled Information Displays and
Yang Hou1, Guoqiang Lu1, Liangyu He1
1State Key Laboratory of Chemical Resource Engineering, College of Materials Science and Engineering, Beijing University of Chemical Technology, Beijing 100029, P.R. China.
None:
Temperature-sensitive gels are attractive in various fields, including smart windows, information encryption, and actuators. Herein, we select ethylene glycol as the solvent and prepare a poly(4-acryloylmorpholine) (PACMO) organogel with UCST phase transition behavior via photopolymerization. This temperature-sensitive organogel, with transition temperatures adjustable between 10 and 62 °C, displays high temperature sensitivity, a narrow transition window, and excellent cycling stability. The incorporation of comonomers, cosolvents, and cross-linkers significantly affects the transition behavior of the organogel through changing the transition temperature or broadening the transition window from 2 to 25 °C. Variable-temperature infrared spectroscopy and theory calculations reveal that the ether bond of PACMO competes with the intermolecular hydrogen bonds of ethylene glycol. As the temperature rises, the intermolecular hydrogen-bond interaction between ethylene glycol molecules weakens, while the hydrogen-bond interaction between the ether bond and ethylene glycol strengthens, leading to changes in transparency of the organogel. The applications of the organogel in the fields of temperature-controlled information displays and smart temperature labels are demonstrated. This design broadens the types of temperature-sensitive gel materials to organogels, opening a pathway toward applications with multifunctional optical requirements.
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