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Updated: Nov 18, 2025

Bridging the Bio-Electronic Interface with Biofabrication
Published on: June 6, 2012
Multiple chiroptical switches and logic circuit based on salicyl‒ imine‒chitosan hydrogel
Changxia Liu1, Cuifang Dong1, Shuheng Liu1
1College of Chemistry and Chemical Engineering, Cangzhou Normal University, Cangzhou, 061001, PR China.
Abstract:
A chitosan-based chiral hydrogel was fabricated by grafting achiral salicylaldehyde (SA) on chitosan chains, followed by supramolecular assembly (CS-SA hydrogel hereafter). The structures and properties of the CS-SA hydrogel were characterized and investigated. The results indicated that the swelling ability of the CS-SA hydrogel depended on the medium pH and crosslinking degree. Circular dichroism measurements revealed that the chiral information of the chitosan was successfully transcribed to the achiral salicylic chromophores through imine bonds. Chiroptical switches based on acid-base responses of the imine bond and the OH fragment of SA and the swelling properties of the CS-SA hydrogel were fabricated, which is first reported for a chitosan-based hydrogel. In addition, a gel film showed good fatigue resistance under external stimuli. IMPLICATION, INHIBIT, and PASS logic gates and a logic circuit based on the chiroptical switches were successfully designed. This study suggests a new method of constructing biobased chiral functional materials.

