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19 results on '"Lee, Jong-Heun"'

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1. Pure and palladium-loaded Co3O4 hollow hierarchical nanostructures with giant and ultraselective chemiresistivity to xylene and toluene.

2. One-pot synthesis of Pd-loaded SnO(2) yolk-shell nanostructures for ultraselective methyl benzene sensors.

3. Extremely sensitive and selective NO probe based on villi-like WO3 nanostructures for application to exhaled breath analyzers.

4. Ultraselective and sensitive detection of xylene and toluene for monitoring indoor air pollution using Cr-doped NiO hierarchical nanostructures.

5. Highly sensitive and selective trimethylamine sensor using one-dimensional ZnO-Cr2O3 hetero-nanostructures.

6. Self-activated ultrahigh chemosensitivity of oxide thin film nanostructures for transparent sensors.

7. Design of highly sensitive C2H5OH sensors using self-assembled ZnO nanostructures.

8. Monolayer Co3O4 Inverse Opals as Multifunctional Sensors for Volatile Organic Compounds.

9. Pure and Palladium-Loaded Co3O4 Hollow Hierarchical Nanostructures with Giant and Ultraselective Chemiresistivity to Xylene and Toluene.

10. Electrochemical Properties of Yolk-Shell-Structured Zn-Fe-S Multicomponent Sulfide Materials with a 1:2 Zn/Fe Molar Ratio.

11. One-Pot Synthesis of Pd-Loaded SnO2 Yolk-Shell Nanostructures for Ultraselective Methyl Benzene Sensors.

12. Gas sensors using hierarchical and hollow oxide nanostructures: Overview

13. Enhanced CO sensing characteristics of hierarchical and hollow In2O3 microspheres

14. Highly selective and sensitive xylene sensors using Cr2O3-ZnCr2O4 hetero-nanostructures prepared by galvanic replacement.

15. Phase-pure β-NiMoO4 yolk-shell spheres for high-performance anode materials in lithium-ion batteries.

16. ZnO hierarchical nanostructures grown at room temperature and their C2H5OH sensor applications

17. Gas sensing characteristics of WO3 nanoplates prepared by acidification method

18. C2H5OH sensing characteristics of various Co3O4 nanostructures prepared by solvothermal reaction

19. Growth mechanism of In(OH)3 nanocubes during hydrothermal reaction

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