Enhanced HS Gas-Sensing Performance of Ni-Doped ZnO Nanowire Arrays.

ACS Omega

Yunnan Key Laboratory of Opto-electronic Information Technology, Yunnan Normal University, Kunming 650500, China.

Published: February 2023

AI Article Synopsis

  • Ni-doped ZnO nanowire arrays (Ni-ZnO NRs) are created using a hydrothermal method on specialized electrodes, with different nickel concentrations (0-12 at. %) to optimize device performance.
  • Scanning electron microscopy and high-resolution transmission electron microscopy are used to analyze the NRs' morphology and structure, revealing that an 8 at. % Ni precursor concentration exhibits superior selectivity and responsiveness for hydrogen sulfide (HS) gas at 250 °C compared to other tested gases.
  • The enhanced sensitivity of the Ni-ZnO NRs is attributed to the uniformity of the nanowire array and the presence of doped nickel ions, which increase the surface area for gas adsorption, leading

Article Abstract

Ni-doped ZnO nanowire arrays (Ni-ZnO NRs) with different Ni concentrations are grown on etched fluorine-doped tin oxide electrodes by the hydrothermal method. The Ni-ZnO NRs with a nickel precursor concentration of 0-12 at. % are adjusted to improve the selectivity and response of the devices. The NRs' morphology and microstructure are investigated by scanning electron microscopy and high-resolution transmission electron microscopy. The sensitive property of the Ni-ZnO NRs is measured. It is found that the Ni-ZnO NRs with an 8 at. % Ni precursor concentration have high selectivity for HS and a large response of 68.9 at 250 °C compared to other gases including ethanol, acetone, toluene, and nitrogen dioxide. Their response/recovery time is 75/54 s. The sensing mechanism is discussed in terms of doping concentration, optimum operating temperature, gas type, and gas concentration. The enhanced performance is related to the regularity degree of the array and the doped Ni and Ni ions, which increases the active sites for oxygen and target gas adsorption on the surface.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9979365PMC
http://dx.doi.org/10.1021/acsomega.2c07092DOI Listing

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Enhanced HS Gas-Sensing Performance of Ni-Doped ZnO Nanowire Arrays.

ACS Omega

February 2023

Yunnan Key Laboratory of Opto-electronic Information Technology, Yunnan Normal University, Kunming 650500, China.

Article Synopsis
  • Ni-doped ZnO nanowire arrays (Ni-ZnO NRs) are created using a hydrothermal method on specialized electrodes, with different nickel concentrations (0-12 at. %) to optimize device performance.
  • Scanning electron microscopy and high-resolution transmission electron microscopy are used to analyze the NRs' morphology and structure, revealing that an 8 at. % Ni precursor concentration exhibits superior selectivity and responsiveness for hydrogen sulfide (HS) gas at 250 °C compared to other tested gases.
  • The enhanced sensitivity of the Ni-ZnO NRs is attributed to the uniformity of the nanowire array and the presence of doped nickel ions, which increase the surface area for gas adsorption, leading
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