4.8 Article

Transparent, Antifreezing, Ionic Conductive Cellulose Hydrogel with Stable Sensitivity at Subzero Temperature

Journal

ACS APPLIED MATERIALS & INTERFACES
Volume 11, Issue 44, Pages 41710-41716

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acsami.9b15849

Keywords

cellulose; aqueous solvent; antifreezing; conductive hydrogel; sensor

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Cellulose was dissolved in benzyltrimethyl ammonium hydroxide (BzMe(3)NOH) aqueous solution, and ionic conductive cellulose hydrogels (CCHs) with antifreezing property were directly fabricated by chemical cross-linking, without further treatment. The concentrated BzMe(3)NOH solution in the CCH matrix endowed the hydrogel with transparency, ionic conductivity, and freeze tolerance. CCH maintained transparency over 90% and stable mechanical properties in the temperatures from -27.8 to 62.1 degrees C. Furthermore, the CCH-based sensors exhibited stable sensitivity to tensile strain, compressive pressure, and temperature, in a wide temperature range including the subzero temperature, with a fast responding time and no obvious hysteresis. The present work is expected to provide a simple and sustainable pathway to prepare an antifreezing soft conductor with multifunctions based on cellulose, which enables a broad range of potential applications.

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