Metal oxides are the most commonly used materials for chemical sensors, originally in the form of thick films. Single-crystalline one-dimensional nanostructures have considerable advantages: high surface-to-volume ratio, readily achieved reduced lateral dimensions, and their high degree of purity and crystallinity. These characteristics permit a variety of gas sensor designs, such as mat-based or single wire devices, self-heating devices, and photoactivation. Despite these advantages, large-scale integration has still not been achieved, and both one- and two-dimensional nanostructures still deserve deep study and research.

One- and two-dimensional metal oxide nanostructures for chemical sensing

Comini E.;Zappa D.
2019-01-01

Abstract

Metal oxides are the most commonly used materials for chemical sensors, originally in the form of thick films. Single-crystalline one-dimensional nanostructures have considerable advantages: high surface-to-volume ratio, readily achieved reduced lateral dimensions, and their high degree of purity and crystallinity. These characteristics permit a variety of gas sensor designs, such as mat-based or single wire devices, self-heating devices, and photoactivation. Despite these advantages, large-scale integration has still not been achieved, and both one- and two-dimensional nanostructures still deserve deep study and research.
2019
Nessuno
Semiconductor Gas Sensors
Jaaniso, R., Tan, O.K.
PE3_5 Electronic properties of materials and transport
PE3_13 Nanophysics: nanoelectronics, nanophotonics, nanomagnetism
PE4_4 Surface science and nanostructures
PE3_7 Semiconductors, material growth, physical properties
PE4_8 Electrochemistry, electrodialysis, microfluidics, sensors
PE5_6 New materials: oxides, alloys, composite, organic-inorganic hybrid, nanoparticles
Inglese
Internazionale
161
184
24
9780081025598
Elsevier
Chemical sensing; Films; Metal oxide; Nanowires
no
2 Contributo in Volume::2.1 Contributo in volume (Capitolo o Saggio)
2
268
reserved
Comini, E.; Zappa, D.
info:eu-repo/semantics/bookPart
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11379/528418
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