Computational Design and Experimental Validation of Monometallic-Doped Sno2 Catalysts for Selective Catalytic Oxidation of Ammonia

29 Pages Posted: 20 Jul 2023

See all articles by Yan Zhang

Yan Zhang

Tianjin University

Min Zhang

Tianjin University

Meng Wang

Tianjin University

Caixia Liu

Tianjin University

Qingling Liu

Tianjin University

Weichao Wang

Nankai University

Ziyin Zhang

Tianjin University

Rui Han

Tianjin University

Na Ji

Tianjin University

Abstract

Due to the intricate structure of catalysts, traditional catalyst design relies on iterative trial-and-error experiments. We have systematically established a catalyst design strategy to evaluate the performance of NH3-SCO reactions from the perspective of DFT calculations. Specifically, we used the catalyst formation energy as a stability descriptor and the adsorption energies of NH3, NH2, and O p-band center as performance descriptors, we identified the four most promising catalysts among 45 kinds of doped SnO2 catalysts. Subsequently, experimental validation was performed to demonstrate the outstanding consistency between the DFT-driven descriptors and the stability and catalytic performance of the catalyst. Particularly, the Ce doping resulted in a 175 °C reduction in the T90 compared to the SnO2 catalyst. It is noteworthy that Ce doping promotes the cycling between oxygen vacancies and lattice oxygen, which contributes primarily to the enhancement of O2 activation capability and, consequently, the improvement in catalytic activity.

Keywords: Descriptor, NH3-SCO, Oxygen vacancy, Oxidation, Defects in solids

Suggested Citation

Zhang, Yan and Zhang, Min and Wang, Meng and Liu, Caixia and Liu, Qingling and Wang, Weichao and Zhang, Ziyin and Han, Rui and Ji, Na, Computational Design and Experimental Validation of Monometallic-Doped Sno2 Catalysts for Selective Catalytic Oxidation of Ammonia. Available at SSRN: https://ssrn.com/abstract=4516106 or http://dx.doi.org/10.2139/ssrn.4516106

Yan Zhang

Tianjin University ( email )

92, Weijin Road
Nankai District
Tianjin, 300072
China

Min Zhang

Tianjin University ( email )

92, Weijin Road
Nankai District
Tianjin, 300072
China

Meng Wang

Tianjin University ( email )

92, Weijin Road
Nankai District
Tianjin, 300072
China

Caixia Liu (Contact Author)

Tianjin University ( email )

92, Weijin Road
Nankai District
Tianjin, 300072
China

Qingling Liu

Tianjin University ( email )

92, Weijin Road
Nankai District
Tianjin, 300072
China

Weichao Wang

Nankai University ( email )

94 Weijin Road
Tianjin, 300071
China

Ziyin Zhang

Tianjin University ( email )

Rui Han

Tianjin University ( email )

92, Weijin Road
Nankai District
Tianjin, 300072
China

Na Ji

Tianjin University ( email )

92, Weijin Road
Nankai District
Tianjin, 300072
China

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