Complex and Composite Metal Oxides for Gas, VOC and Humidity Sensors, Volume 2
Complex and Composite Metal Oxides for Gas, VOC and Humidity Sensors, Volume 2
Technology and New Trends
Kumar, Pragati; Yadav, Bal Chandra
Elsevier - Health Sciences Division
03/2024
732
Mole
Inglês
9780323954761
15 a 20 dias
1. Features of preparing metal oxide nanocomposites: General consideration
2. Synthesis of heterostructure metal oxide nanocomposites and their gas-sensing properties
3. Synthesis of metal oxide composite nanofibers by electrospinning and its application in gas and VOC sensors
4. Metal oxide based bi/multilayer thin film heterostructures for gas sensing applications
5. Inkjet printing of MOx-based heterostructures for gas sensing and safety applications-Recent trends, challenges, and future scope
6. Improving the parameters of metal oxide gas sensors through doping
7. Metal oxide composite-based 1D nanomaterials and its gas-sensing characteristics
8. 2D and 3D nanomaterials-based metal oxide composites and their applications in gas sensing
9. Composite based on metal oxides and 2D metal dichalcogenides for gas sensing
10. Graphene-metal oxide hybrids and their gas-sensing characteristics
11. Metal oxide-zeolite hybrid-based VOC sensors
SECTION 2 Complex metal oxide compounds for electrical gas and VOC sensors
12. Perovskites (ABO3) and their prospects for gas sensor application
13. ABO4 and AB2O6 structured metal oxide-based gas sensors
14. Gas-sensing characteristics of AB2O4 (spinel ferrites)-structured metal oxides
15. Quaternary and more complex metal oxide compounds for gas sensor design
SECTION 3 Advanced strategies for future metal oxide nanocomposites-based sensors
16. Room temperature gas and VOCs sensors based on metal oxide composites
17. Self-powered gas and humidity sensors
18. Wearable and flexible nanocomposite-based gas sensors
19. Self-healing materials for highly sensitive gas sensors and for other applications
20. Isolated single-atomic-site (ISAS) materials for gas and VOC detection
21. Metal-oxide nanocomposites for microbial volatile organic compounds
1. Features of preparing metal oxide nanocomposites: General consideration
2. Synthesis of heterostructure metal oxide nanocomposites and their gas-sensing properties
3. Synthesis of metal oxide composite nanofibers by electrospinning and its application in gas and VOC sensors
4. Metal oxide based bi/multilayer thin film heterostructures for gas sensing applications
5. Inkjet printing of MOx-based heterostructures for gas sensing and safety applications-Recent trends, challenges, and future scope
6. Improving the parameters of metal oxide gas sensors through doping
7. Metal oxide composite-based 1D nanomaterials and its gas-sensing characteristics
8. 2D and 3D nanomaterials-based metal oxide composites and their applications in gas sensing
9. Composite based on metal oxides and 2D metal dichalcogenides for gas sensing
10. Graphene-metal oxide hybrids and their gas-sensing characteristics
11. Metal oxide-zeolite hybrid-based VOC sensors
SECTION 2 Complex metal oxide compounds for electrical gas and VOC sensors
12. Perovskites (ABO3) and their prospects for gas sensor application
13. ABO4 and AB2O6 structured metal oxide-based gas sensors
14. Gas-sensing characteristics of AB2O4 (spinel ferrites)-structured metal oxides
15. Quaternary and more complex metal oxide compounds for gas sensor design
SECTION 3 Advanced strategies for future metal oxide nanocomposites-based sensors
16. Room temperature gas and VOCs sensors based on metal oxide composites
17. Self-powered gas and humidity sensors
18. Wearable and flexible nanocomposite-based gas sensors
19. Self-healing materials for highly sensitive gas sensors and for other applications
20. Isolated single-atomic-site (ISAS) materials for gas and VOC detection
21. Metal-oxide nanocomposites for microbial volatile organic compounds