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Updated: Feb 18, 2026

Development and Functionalization of Electrolyte-Gated Graphene Field-Effect Transistor for Biomarker Detection
Published on: February 1, 2022
Ultrasensitive Ethene Detector Based on a Graphene-Copper(I) Hybrid Material
Wangyang Fu1, Thomas F van Dijkman1, Lia M C Lima1
1Supramolecular and Biomaterials Chemistry and ‡Metals in Catalysis, Biomimetics, and Inorganic Materials, Leiden University, Leiden Institute of Chemistry , P.O. Box 9502, 2300 RA Leiden, The Netherlands.
Abstract:
Ethene is a highly diffusive and relatively unreactive gas that induces aging responses in plants in concentrations as low as parts per billion. Monitoring concentrations of ethene is critically important for transport and storage of food crops, necessitating the development of a new generation of ultrasensitive detectors. Here we show that by functionalizing graphene with copper complexes biologically relevant concentrations of ethene and of the spoilage marker ethanol can be detected. Importantly, in addition these sensors provide us with important insights into the interactions between molecules, a key concept in chemistry. Chemically induced dipole fluctuations in molecules as they undergo a chemical reaction are harvested in an elegant way through subtle field effects in graphene. By exploiting changes in the dipole moments of molecules that occur upon a chemical reaction we are able to track the reaction and provide mechanistic insight that was, until now, out of reach.
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