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MOF‐Derived ZrO 2 @C for Real‐Time H 2 S Monitoring in Food Freshness Assessment

2026/04/01 by Xuefei Zhao, Z D Zhang, Ling Leng +7 · 1 voice
Engineering · #Advanced Chemical Sensor Technologies #Advanced Sensor and Energy Harvesting Materials #Gas Sensing Nanomaterials and Sensors

paper · doi:10.1002/smm2.70078

openalex publication_date 2026/04/01 · openalex created_date 2026/04/28 · openalex updated_date 2026/06/19

Abstract

ABSTRACT Effective monitoring of food spoilage is crucial for global food security, as nearly one‐third of the food produced worldwide each year is wasted and 29% of the population faces nutritional risk. However, existing gas sensing technologies suffer from high material costs, limited sensitivity, and inefficient data transmission. Here, we report a low‐cost electrochemical H 2 S sensor based on a metal‐organic framework‐derived ZrO 2 @C‐900 composite. This active material costs only US0.09 g −1 , has high sensitivity, and retains 97% of its initial performance after 120 days of continuous operation. This device integrates Bluetooth transmission functionality to monitor H 2 S release in real time as a biomarker of food spoilage. This sensor operates stably under high humidity and low temperature conditions, making it suitable for use in intelligent cold chain systems.

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