Direct Photocatalytic Methane Oxidation to Formaldehyde by N Doping Co-Decorated Mixed Crystal TiO<sub>2</sub>.

Zhang, Ruixue; Shi, Jiale; Fu, Lei; Liu, Ya-Ge; Jia, Yibing; Han, Zhenyu; Yuan, Kun; Jiang, Hai-Ying · ACS Nano · 2024

basic_science · Level V

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Abstract

In this paper, N-doped TiO<sub>2</sub> mixed crystals are prepared via direct calcination of TiN for highly selective oxidation of CH<sub>4</sub> to HCHO at room temperature. The structures of the prepared TiO<sub>2</sub> samples are characterized to be N-doped TiO<sub>2</sub> of anatase and rutile mixed crystals. The crystal structures of TiO<sub>2</sub> samples are determined by XRD spectra and Raman spectra, while N doping is demonstrated by TEM mapping, ONH inorganic element analysis, and high-resolution XPS results. Significantly, the production rate of HCHO is as high as 23.5 mmol·g<sup>-1</sup>·h<sup>-1</sup> with a selectivity over 90%. Mechanism studies reveal that H<sub>2</sub>O is the main oxygen source and acts through the formation of ·OH. DFT calculations indicate that the construction of a mixed crystal structure and N-doping modification mainly act by increasing the adsorption capacity of H<sub>2</sub>O. An efficient photocatalyst was prepared by us to convert CH<sub>4</sub> to HCHO with high yield and selectivity, greatly promoting the development of the photocatalytic CH<sub>4</sub> conversion study.