Electron beam evaporated gold doped tungsten oxide nanostructured films for sensor applications

Gas sensors play a vital role in monitoring environmental pollution for human health, safety, and the detection of various gasses in the environment. Nanostructured metal oxide thin films have been widely used in sensor applications owing to their unique properties. In this study, pure and gold (Au)...

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Main Authors: Adilakshmi Griddaluru, Sivasankar Reddy Akepati
Format: Article
Language:English
Published: KeAi Communications Co., Ltd. 2023-04-01
Series:ChemPhysMater
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2772571522000572
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author Adilakshmi Griddaluru
Sivasankar Reddy Akepati
author_facet Adilakshmi Griddaluru
Sivasankar Reddy Akepati
author_sort Adilakshmi Griddaluru
collection DOAJ
description Gas sensors play a vital role in monitoring environmental pollution for human health, safety, and the detection of various gasses in the environment. Nanostructured metal oxide thin films have been widely used in sensor applications owing to their unique properties. In this study, pure and gold (Au) doped nanostructured tungsten trioxide (WO3) films were deposited on glass substrates by electron beam evaporation at room temperature. The microstructure of the WO3 films changed from nanoflakes to nanorods upon variation of the wt% of Au. The sensing properties of WO3 based nanostructure films were measured using a computer-controlled system. The gas sensing results showed that the Au-doped WO3 films exhibited a higher sensitivity than the undoped films. The 15 wt% Au-doped WO3 nanostructure films showed high sensitivity towards ethanol and the response (sensitivity) value was 89. The response and recovery times for 15 wt% Au-doped WO3 were 8 and 10 s, respectively.
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spelling doaj.art-d7221980d2234f1289c486df52637dab2023-04-07T06:51:20ZengKeAi Communications Co., Ltd.ChemPhysMater2772-57152023-04-0122172179Electron beam evaporated gold doped tungsten oxide nanostructured films for sensor applicationsAdilakshmi Griddaluru0Sivasankar Reddy Akepati1Department of Physics, Vikrama Simhapuri University College, Andhra Pradesh, Kavali 524201, IndiaCorresponding author.; Department of Physics, Vikrama Simhapuri University College, Andhra Pradesh, Kavali 524201, IndiaGas sensors play a vital role in monitoring environmental pollution for human health, safety, and the detection of various gasses in the environment. Nanostructured metal oxide thin films have been widely used in sensor applications owing to their unique properties. In this study, pure and gold (Au) doped nanostructured tungsten trioxide (WO3) films were deposited on glass substrates by electron beam evaporation at room temperature. The microstructure of the WO3 films changed from nanoflakes to nanorods upon variation of the wt% of Au. The sensing properties of WO3 based nanostructure films were measured using a computer-controlled system. The gas sensing results showed that the Au-doped WO3 films exhibited a higher sensitivity than the undoped films. The 15 wt% Au-doped WO3 nanostructure films showed high sensitivity towards ethanol and the response (sensitivity) value was 89. The response and recovery times for 15 wt% Au-doped WO3 were 8 and 10 s, respectively.http://www.sciencedirect.com/science/article/pii/S2772571522000572Electron beam evaporationTungsten oxideGoldNanostructureGas sensors
spellingShingle Adilakshmi Griddaluru
Sivasankar Reddy Akepati
Electron beam evaporated gold doped tungsten oxide nanostructured films for sensor applications
ChemPhysMater
Electron beam evaporation
Tungsten oxide
Gold
Nanostructure
Gas sensors
title Electron beam evaporated gold doped tungsten oxide nanostructured films for sensor applications
title_full Electron beam evaporated gold doped tungsten oxide nanostructured films for sensor applications
title_fullStr Electron beam evaporated gold doped tungsten oxide nanostructured films for sensor applications
title_full_unstemmed Electron beam evaporated gold doped tungsten oxide nanostructured films for sensor applications
title_short Electron beam evaporated gold doped tungsten oxide nanostructured films for sensor applications
title_sort electron beam evaporated gold doped tungsten oxide nanostructured films for sensor applications
topic Electron beam evaporation
Tungsten oxide
Gold
Nanostructure
Gas sensors
url http://www.sciencedirect.com/science/article/pii/S2772571522000572
work_keys_str_mv AT adilakshmigriddaluru electronbeamevaporatedgolddopedtungstenoxidenanostructuredfilmsforsensorapplications
AT sivasankarreddyakepati electronbeamevaporatedgolddopedtungstenoxidenanostructuredfilmsforsensorapplications