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Titlebook: Nanostructured Materials for Electronic Nose; Nirav J. Joshi,Sachin Navale Book 2024 The Editor(s) (if applicable) and The Author(s), unde

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R. S. Redekar,K. V. Patil,A. A. Bhoite,V. L. Patil,P. M. Shirage,N. L. Tarwalociation of Official Analytical Chemists 1990; Nesheim 1979; Steyn et al. 1991), there are errors (the term error will be used to denote variability) associated with each of the steps of the mycotoxin test procedure (Whitaker et al. 1972, 1974, 1976, 1979, 1993, 1998; Dickens et al. 1979; Remington
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Role of 2D Materials in Electronic Nose, nanoscale thickness enhances absorption and sensitivity, making 2D materials suitable for sensing applications. Due to their unique structural, chemical, and electrical properties, along with distinctive attributes such as high reaction sites within a low-density structure and significant surface-t
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Nanostructured Materials and Design Concept for Electronic Nose,nmental monitoring, industrial applications, petroleum products, military, food storage, etc. E-nose devices are detecting and identifying the various flavors by using a sensor array and it has been used for a wide range of applications. However, its development still faces several problems, which c
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Nanostructured Materials and Electronic Nose Devices: Introduction,st one dimension of 100 nm or less. Nanomaterials have numerous established applications in the field of nanotechnology and display different physical–chemical characteristics from normal chemicals. In this chapter, the topic of nanostructured materials will be defined and the classification of nano
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Nanostructured Metal Oxide for High-Performance Electronic Nose,/recovery times, and, most notably, their exceptional selectivity. These E-noses can be assembled using a single metal oxide or a gas sensor array based on metal oxides or MEMS technology, particularly when combined with machine-learning algorithms, to detect small-molecule gases and VOCs. In this r
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