NH3 Sensor Based on rGO-PANI Composite with Improved Sensitivity

Author:

Hadano Fabio Seiti,Gavim Anderson Emanuel Ximim,Stefanelo Josiani Cristina,Gusso Sara Luiza,Macedo Andreia GerniskiORCID,Rodrigues Paula CristinaORCID,Mohd Yusoff Abd. Rashid bin,Schneider Fabio KurtORCID,Deus Jeferson Ferreira deORCID,José da Silva Wilson

Abstract

This work reports on a reduced graphene oxide and poly(aniline) composite (rGO-PANI), with rGO clusters inserted between PANI chains. These clusters were formed due the plasticizing effect of N-methyl-2-pyrrolidone (NMP) solvent, which was added during the synthesis. Further, this composite was processed as thin film onto an interdigitated electrode array and used as the sensitive layer for ammonia gas, presenting sensitivity of 250% at 100 ppm, a response time of 97 s, and a lowest detection limit of 5 ppm. The PANI deprotonation process, upon exposure to NH3, rGO, also contributed by improving the sensitivity due its higher surface area and the presence of carboxylic acids. This allowed for the interaction between the hydrogen of NH3 (nucleophilic character) and the -COOH groups (electrophilic character) from the rGO surface, thereby introducing a promising sensing composite for amine-based gases.

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Biochemistry,Instrumentation,Atomic and Molecular Physics, and Optics,Analytical Chemistry

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