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18 results on '"Kim, Il‐Doo"'

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1. 2D layered Mn and Ru oxide nanosheets for real-time breath humidity monitoring.

2. A Critical Review on Functionalization of Air‐Cathodes for Nonaqueous Li–O2 Batteries.

3. Imparting Metal Oxides with High Sensitivity Toward Light‐Activated NO2 Detection Via Tailored Interfacial Chemistry.

4. Sacrificial Template‐Assisted Synthesis of Inorganic Nanosheets with High‐Loading Single‐Atom Catalysts: A General Approach.

5. Controlled synthesis of electrospun hollow Pt-loaded SnO2 microbelts for acetone sensing.

6. Pt nanoparticles functionalized tungsten oxynitride hybrid chemiresistor: Low-temperature NO2 sensing.

7. Catalyst-decorated hollow WO3 nanotubes using layer-by-layer self-assembly on polymeric nanofiber templates and their application in exhaled breath sensor.

8. Thermal shock-stabilized metal catalysts on oxide hemitubes: Toward ultrasensitive chemiresistors.

9. Gas sensing properties of p-type hollow NiO hemispheres prepared by polymeric colloidal templating method

10. Pd-doped TiO2 nanofiber networks for gas sensor applications

11. Gas sensitivity modulation of oxide thin films by means of an electrical method

12. Zinc oxide thin film transistors using MgO–Bi1.5Zn1.0Nb1.5O7 composite gate insulator on glass substrate

13. Effect of metal/metal oxide catalysts on graphene fiber for improved NO2 sensing.

14. Chemiresistive acetylene sensor fabricated from Ga-doped ZnO nanofibers functionalized with Pt catalysts.

15. Ultra-fast responding and recovering C2H5OH sensors using SnO2hollow spheres prepared and activated by Ni templatesElectronic supplementary information (ESI) available: Detailed preparation and characterization section. See DOI: 10.1039/c0cc00213e.

16. Porosity controlled 3D SnO2 spheres via electrostatic spray: Selective acetone sensors.

17. Heterogeneous, Porous 2D Oxide Sheets via Rapid Galvanic Replacement: Toward Superior HCHO Sensing Application.

18. A General Synthesis of Crumpled Metal Oxide Nanosheets as Superior Chemiresistive Sensing Layers.

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