Electronic noses based on metal oxide nanowires: A review

Author:

Tonezzer Matteo123,Thi Thanh Le Dang4,Van Duy Lai245,Hoa Nguyen Duc4,Gasperi Flavia12,Van Duy Nguyen4,Biasioli Franco1

Affiliation:

1. Department of Food Quality and Nutrition, Research and Innovation Centre, Fondazione Edmund Mach , 38010 , San Michele all’ Adige , TN , Italy

2. Center Agriculture Food Environment, University of Trento/Fondazione Edmund Mach , Via E. Mach 1 , 38010 San Michele all’Adige , Italy

3. National Research Council (CNR), Institute of Materials for Electronics and Magnetism (IMEM) , Via alla Cascata 56/C , 38123 Trento , Italy

4. International Training Institute for Materials Science (ITIMS), Hanoi University of Science and Technology (HUST) , No. 1, Dai Co Viet Str. , Hanoi , Vietnam

5. Department of Electronic Engineering, University of Rome Tor Vergata , Via del Politecnico 1, 00133 , Rome , Italy

Abstract

Abstract Metal oxides are ideal for the fabrication of gas sensors: they are sensitive to many gases while allowing the device to be simple, tiny, and inexpensive. Nonetheless, their lack of selectivity remains a limitation. In order to achieve good selectivity in applications with many possible interfering gases, the sensors are inserted into an electronic nose that combines the signals from nonselective sensors and analyzes them with multivariate statistical algorithms in order to obtain selectivity. This review analyzes the scientific articles published in the last decade regarding electronic noses based on metal oxide nanowires. After a general introduction, Section 2 discusses the issues related to poor intrinsic selectivity. Section 3 briefly reviews the main algorithms that have hitherto been used and the results they can provide. Section 4 classifies the recent literature into fundamental research, agrifood, health, security. In Section 5, the literature is analyzed regarding the metal oxides, the surface decoration nanoparticles, the features that differentiate the sensors in a given array, the application for which the device was developed, the algorithm used, and the type of information obtained. Section 6 concludes by discussing the present state and points out the requirements for their use in real-world applications.

Publisher

Walter de Gruyter GmbH

Subject

Surfaces, Coatings and Films,Process Chemistry and Technology,Energy Engineering and Power Technology,Biomaterials,Medicine (miscellaneous),Biotechnology

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