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Published by LAP LAMBERT Academic Publishing, 2025
ISBN 10: 6209316832 ISBN 13: 9786209316838
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ISBN 10: 6209747515 ISBN 13: 9786209747519
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Published by LAP LAMBERT Academic Publishing, 2025
ISBN 10: 6209316832 ISBN 13: 9786209316838
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Published by LAP Lambert Academic Publishing, 2026
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Language: French
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ISBN 10: 6209583776 ISBN 13: 9786209583773
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Published by LAP LAMBERT Academic Publishing, 2025
ISBN 10: 6209316832 ISBN 13: 9786209316838
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Taschenbuch. Condition: Neu. Engineering 3D Mesoporous ZnO for Enhanced Gas Sensor Performance | Mesoporous ZnO for Improved Gas Sensing | Vithoba Patil (u. a.) | Taschenbuch | Englisch | 2025 | LAP LAMBERT Academic Publishing | EAN 9786209316838 | Verantwortliche Person für die EU: SIA OmniScriptum Publishing, Brivibas Gatve 197, 1039 RIGA, LETTLAND, customerservice[at]vdm-vsg[dot]de | Anbieter: preigu.
Language: Polish
Published by Wydawnictwo Nasza Wiedza, 2026
ISBN 10: 6209924263 ISBN 13: 9786209924262
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Language: Portuguese
Published by Edicoes Nosso Conhecimento, 2026
ISBN 10: 6209926827 ISBN 13: 9786209926822
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Published by LAP LAMBERT Academic Publishing, 2025
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Published by Edições Nosso Conhecimento, 2026
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ISBN 10: 6209594018 ISBN 13: 9786209594014
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Published by Editions Notre Savoir, 2026
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Published by Edições Nosso Conhecimento, 2026
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Published by Wydawnictwo Nasza Wiedza, 2026
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Language: English
Published by LAP LAMBERT Academic Publishing, 2025
ISBN 10: 6209316832 ISBN 13: 9786209316838
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Published by LAP LAMBERT Academic Publishing, 2025
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Published by LAP Lambert Academic Publishing, 2025
ISBN 10: 6209316832 ISBN 13: 9786209316838
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Paperback. Condition: new. Paperback. Three-dimensional (3D) nanostructured materials have gained significant attention due to their unique physical and chemical properties, including high surface area-to-volume ratio, excellent thermal and chemical stability, low power consumption, and lightweight nature. These advantages make 3D metal-oxide nanostructures highly suitable for gas-sensing applications, leading to substantial research interest in developing low-cost, ultrasensitive gas sensors. Semiconductor metal oxides such as ZnO, SnO2, and In2O3 are widely explored for gas sensing because of their stability; however, their high operating temperatures and limited response remain challenges. To overcome these limitations, 3D nanostructures such as nanowires, nanorods, and nanopyramids are being developed, offering enhanced electron transport, high crystallinity, larger surface area, and lower operating temperatures. Chemical synthesis techniques are particularly attractive as they enable large-area, catalyst-free growth of such nanostructures. The proposed work focuses on synthesizing 3D ZnO nanostructures using chemical routes and studying their gas-sensing behaviour. This item is printed on demand. Shipping may be from multiple locations in the US or from the UK, depending on stock availability.
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Published by Omniscriptum, LAP Lambert Academic Publishing, 2025
ISBN 10: 6209316832 ISBN 13: 9786209316838
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Taschenbuch. Condition: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -Three-dimensional (3D) nanostructured materials have gained significant attention due to their unique physical and chemical properties, including high surface area-to-volume ratio, excellent thermal and chemical stability, low power consumption, and lightweight nature. These advantages make 3D metal-oxide nanostructures highly suitable for gas-sensing applications, leading to substantial research interest in developing low-cost, ultrasensitive gas sensors. Semiconductor metal oxides such as ZnO, SnO2, and In2O are widely explored for gas sensing because of their stability; however, their high operating temperatures and limited response remain challenges. To overcome these limitations, 3D nanostructures such as nanowires, nanorods, and nanopyramids are being developed, offering enhanced electron transport, high crystallinity, larger surface area, and lower operating temperatures. Chemical synthesis techniques are particularly attractive as they enable large-area, catalyst-free growth of such nanostructures. The proposed work focuses on synthesizing 3D ZnO nanostructures using chemical routes and studying their gas-sensing behaviour. 64 pp. Englisch.
Language: English
Published by LAP LAMBERT Academic Publishing, 2025
ISBN 10: 6209082513 ISBN 13: 9786209082511
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PAP. Condition: New. New Book. Shipped from UK. THIS BOOK IS PRINTED ON DEMAND. Established seller since 2000.
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Published by LAP LAMBERT Academic Publishing, 2025
ISBN 10: 6209082513 ISBN 13: 9786209082511
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Add to basketPAP. Condition: New. New Book. Delivered from our UK warehouse in 4 to 14 business days. THIS BOOK IS PRINTED ON DEMAND. Established seller since 2000.
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Published by LAP LAMBERT Academic Publishing, 2025
ISBN 10: 6209316832 ISBN 13: 9786209316838
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