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Journal ArticleDOI

Vacancy-triggered and dopant-assisted NO electrocatalytic reduction over MoS2.

Mamutjan Tursun, +1 more
- 15 Sep 2021 - 
- Vol. 23, Iss: 35, pp 19872-19883
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TLDR
In this paper, the performance of 2H-MoS2 monolayers with the most common S vacancies and some Mo atoms substituted by transition metal atoms was investigated. And the results showed that an S vacancy and a heteroatom substitution tend to form a first nearest neighbour (1NN) pair, which greatly improves the NOER catalytic performance of twoH-moS2.
Abstract
Nitric oxide electroreduction reaction (NOER) is an efficient method for NH3 synthesis and NOx-related pollutant treatment. However, current research on NOER catalysts mainly focuses on noble metals and single atom catalysts, while low-cost transition metal dichalcogenides (TMDCs) are rarely considered. Herein, by applying density functional theory (DFT) calculations, we study the catalytic performance of NOER over 2H-MoS2 monolayers with the most common S vacancies and some Mo atoms substituted by transition metal atoms (denoted as TM-MoS2@VS). Our results show that an S vacancy and a heteroatom substitution tend to form a first nearest neighbour (1NN) pair, which greatly improves the NOER catalytic performance of 2H-MoS2. The S vacancy site can trigger NOER by strongly adsorbing a NO molecule and elongating the NO bond, while the heteroatom dopant can assist NOER by tuning the electron donating capability of 2H-MoS2 which breaks the linear scaling relations among key reaction intermediates. At low NO coverage, NH3 can be correspondingly yielded at -0.06 and -0.38 V onset potentials over the Pt- and Au-doped MoS2 catalysts with S vacancies (Pt-MoS2@VS and Au-MoS2@VS). At high NO coverage, N2O/N2 is thermodynamically favored. Meanwhile, the competing hydrogen evolution reaction (HER) is suppressed. Thus, the Pt-MoS2@VS catalysts are promising candidates for NOER. In addition, coupling the substitutional doping of Mo atoms to S vacancies presents great potential in improving the catalytic activity and selectivity of MoS2 for other reactions. In general, the strategy of coupling hetero-metal doping and chalcogen vacancy can be extended to enhance the catalytic activity of other TMDCs.

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Citations
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Journal ArticleDOI

Ultrafine Cu nanoparticles decorated porous TiO2 for high-efficient electrocatalytic reduction of NO to synthesize NH3

TL;DR: In this article , a binary catalyst of Cu/P-TiO2 for low-temperature electrocatalytic reduction of nitric oxide (NORR) is reported.
Journal ArticleDOI

Single-atom metal tuned sulfur vacancy for efficient H2 activation and hydrogen evolution reaction on MoS2 basal plane

TL;DR: In this paper , the optimal active sites for H2 dissociation/ recombination, a crucial step in the aforementioned reactions, on the modified MoS2(0 0 1) are yet to be unequivocally elucidated.
Journal ArticleDOI

Electrocatalytic Reduction of N2 to NH3 over Defective 1T'-WX2 (X=S, Se, Te) Monolayers.

Chao Wu
- 25 Mar 2022 - 
TL;DR: In this paper , the catalytic performance of WX 2 (S, Se, Te) monolayers with both vacancy defects and antisite defects was evaluated for the nitrogen reduction reaction (NRR).
Journal ArticleDOI

Single Transition Metal Atoms Anchored on Defective MoS2 Monolayers for the Electrocatalytic Reduction of Nitric Oxide into Ammonia and Hydroxylamine.

Mamutjan Tursun, +1 more
- 25 Oct 2022 - 
TL;DR: In this article , the eNORR activity of defective single-layer MoS2 catalysts decorated with transition metal atoms (TM@MoS2) is systematically studied by means of density functional theory.
Journal ArticleDOI

Design of material regulatory mechanism for electrocatalytic converting NO/NO 3 − to NH 3 progress

TL;DR: In this paper , the authors discuss different electrocatalytic regulations for crystalline facet engineering, heteroatom doping, heterostructure, surface vacancy engineering, and single atom structure, which bring various metal/nonmetal and their combined catalysts to the preferable performance, such as reactivity, selectivity, FE and stability.
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