4.6 Article

Simultaneous Detection and Removal of Formaldehyde at Room Temperature: Janus Au@ZnO@ZIF-8 Nanoparticles

Journal

NANO-MICRO LETTERS
Volume 10, Issue 1, Pages -

Publisher

SHANGHAI JIAO TONG UNIV PRESS
DOI: 10.1007/s40820-017-0158-0

Keywords

Indoor air quality; Volatile organic compounds; Janus structure; Metal organic frameworks; Plasmonic nanoparticles

Funding

  1. American Chemical Society [57072-DNI10]
  2. National Science Foundation [CMMI-1727553]
  3. Virginia Commonwealth University
  4. US Department of Energy [DE-FG02-96ER45579, DE-AC02-05CH11231]
  5. NSF I/UCR Center Grant [IIP 1464595]

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The detection and removal of volatile organic compounds (VOCs) are of great importance to reduce the risk of indoor air quality concerns. This study reports the rational synthesis of a dual-functional Janus nanostructure and its feasibility for simultaneous detection and removal of VOCs. The Janus nanostructure was synthesized via an anisotropic growth method, composed of plasmonic nanoparticles, semiconductors, and metal organic frameworks (e.g., [GRAPHICS] Au@ZnO@ZIF-8). It exhibits excellent selective detection to formaldehyde (HCHO, as a representative VOC) at room temperature over a wide range of concentrations (from0.25 to 100 ppm), even in the presence of water and toluene molecules as interferences. In addition, HCHO was also found to be partially oxidized into non-toxic formic acid simultaneously with detection. The mechanism underlying this technology was unraveled by both experimental measurements and theoretical calculations: ZnO maintains the conductivity, while ZIF-8 improves the selective gas adsorption; the plasmonic effect of Au nanorods enhances the visible-light-driven photocatalysis of ZnO at room temperature.

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