4.8 Article

Highly Enhanced Acetone Sensing Performances of Porous and Single Crystalline ZnO Nanosheets: High Percentage of Exposed (100) Facets Working Together with Surface Modification with Pd Nanoparticles

Journal

ACS APPLIED MATERIALS & INTERFACES
Volume 4, Issue 8, Pages 3797-3804

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/am3010303

Keywords

ZnO nanosheets; Pd nanoparticles; nano-architectures; self-assembly; acetone sensors; enhanced performances

Funding

  1. National Natural Science Foundation of China [NSFC. 21071130, 21141005]
  2. Outstanding Scholar Program of Henan Province [114200510012]
  3. Key Program of Henan Province for Science and Technology [112102210239, 92102310334]

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Porous and single crystalline ZnO nanosheets, which were synthesized by annealing hydrozincite Zn-5(CO3)(2)(OH)(6) nanoplates produced with a water/ethylene glycol solvothermal method, are used as building blocks to construct functional Pd-ZnO nanoarchitectures together with Pd nanoparticles based on a self-assembly approach. Chemical sensing performances of the ZnO nanosheets were investigated carefully, before and after their surface modification with Pd nanoparticles. It was found that the chemical sensors made with porous ZnO nanosheets exhibit high selectivity, and quick response for detecting acetone, because of the 2D ZnO nanocrystals exposed in (100) facets at high percentage. The performances of the acetone sensors can be further improved dramatically, after the surfaces of ZnO nanosheets are modified with Pd nanoparticles. Novel acetone sensors with enhanced response, selectivity and stability have been fabricated successfully by using nanoarchitectures consisting of ZnO nanosheets and Pd nanoparticles.

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