Facile Heterogeneously Catalyzed Nitrogen Fixation by MXenes

被引:92
作者
Gouveia, Jose D. [1 ]
Morales-Garcia, Angel [2 ,3 ]
Vines, Francesc [2 ,3 ]
Gomes, Jose R. B. [1 ]
Illas, Francesc [2 ,3 ]
机构
[1] Univ Aveiro, CICECO Aveiro Inst Mat, Dept Chem, Campus Univ Santiago, P-3810193 Aveiro, Portugal
[2] Univ Barcelona, Dept Crencia Mat & Quim Fis, Barcelona 08028, Spain
[3] Univ Barcelona, Inst Quim Teor & Computac IQTCUB, Barcelona 08028, Spain
基金
欧盟地平线“2020”;
关键词
2D materials; adsorption; ammonia synthesis; clean MXenes; density functional theory; metal carbides and nitrides; microkinetic modeling; GAS SHIFT REACTION; AMMONIA-SYNTHESIS; CARBIDE MXENE; SURFACE; IRON; MICROKINETICS; SIMULATIONS; ADSORPTION; STABILITY;
D O I
10.1021/acscatal.0c00935
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The rate-limiting step for ammonia (NH3) production via the Haber-Bosch process is the dissociation of molecular nitrogen (N-2), which requires quite harsh working conditions, even when using appropriate heterogeneous catalysts. Here, motivated by the demonstrated enhanced chemical activity of MXenes- a class of two-dimensional inorganic materials- toward the adsorption of quite stable molecules such as CO2 and H2O, we use density functional theory including dispersion, to investigate the suitability of such MXene materials to catalyze N-2 dissociation. Results show that MXenes exothermically adsorb N-2 with rather large adsorption energies ranging from -1.11 to -3.45 eV and elongation of the N-2 bond length by similar to 20%, greatly facilitating their dissociation with energy barriers below 1 eV, reaching 0.28 eV in the most favorable studied case of W2N. Microkinetic simulations indicate that the first hydrogenation of adsorbed atomic nitrogen is feasible at low pressures and moderate temperatures, and that the production of NH3 may occur above 800 K on most studied MXenes, in particular, in W2N. These results reinforce the promising capabilities of MXenes to dissociate nitrogen and suggest combining them co-catalytically with Ru nanoparticles to further improve the efficiency of ammonia synthesis.
引用
收藏
页码:5049 / 5056
页数:8
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