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◆ Food chemistry2026-08-18

Rapidly polymerized cellulose-based hydrogel pads enabled by bromothymol blue for multifunctional fruit storage.

Kunpeng Qian, Huanhuan Liu, Yu Ma, Xiaoyun Zeng, Wenya Ma, Xuliang Wang, Chao Xu, Li Li

原始摘要(英文原文)· Original abstract
Hydrogel absorbent pads prolong shelf life of foods, but moisture regulation remains challenging. Herein, a bromothymol blue (BTB)-induced ZnCl2-dissolved cellulose/poly(2-hydroxyethyl acrylate) hydrogel (ZnC/PHEA-B) was developed via rapid free-radical polymerization. BTB concentration gradients (0-80 mg) were established to regulate polymerization behavior and optimize hydrogel performance. BTB accelerated polymerization, reducing the peak-temperature time from 1140 s to 270 s and increasing the peak temperature from 26.1 to 53.3 °C. Based on polymerization behavior, mechanical properties, and functional performance, ZnC/PHEA-4B was identified as the optimal sample. ZnC/PHEA-4B exhibited good mechanical strength (91.3 kPa and 301.5% strain), strong adhesion, resilience, and frost resistance (-137.5 °C). It enabled active moisture regulation with radical-dependent antioxidant and antibacterial activities. When applied as an absorbent pad, it prolonged blueberry shelf life from 4 to 12 days through moisture regulation, antibacterial, radical-dependent antioxidant and mechanical protection.
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Rapidly polymerized cellulose-based hydrogel pads enabled by bromothymol blue for multifunctional fruit storage. — 科研速览 Science Skim