The preparation process of industrial Fe-based catalysts for ammonia synthesis involves energy-intense and sophisticated treatments. It is thus highly desirable to develop new catalysts with sufficient catalytic performance within smart and more economic approaches. Herein, γ-Al2O3-supported FeOOH nanosheets are employed for the first time as ammonia synthesis catalysts. To monitor the potential of these new materials, unsupported FeOOH and Kpromoted catalysts are additionally investigated for comparison. While no activity is observed from the unsupported catalyst, the activity of γ-Al2O3-supported catalysts shows an inverse relationship with respect to the amount of Fe. Upon correlation of the catalytic performance with the final state of ...
In this review, we present the recent progress in ammonia synthesis research using density functiona...
Developing highly active catalysts for the decomposition of ammonia to produce hydrogen is an import...
Due to the high energy needed to break the N ≡ N bond (945 kJ mol−1), a key step in ammonia producti...
The preparation process of industrial Fe-based catalysts for ammonia synthesis involves energy-inten...
Developing high-performance Fe-based ammonia catalysts through simple and cost-efficient methods has...
We showed recently that the catalytic efficiency of ammonia synthesis on Fe-based nanoparticles (NP)...
A range of Cs-doped Fe/Al2O3 catalysts were prepared for the ammonia decomposition reaction. Through...
Uniform and highly dispersed γ-Fe2O3 nanoparticles with a diameter of ∼6 nm supported on CMK-5 carbo...
Nitrogen can be electrochemically reduced to produce ammonia, which supplies an energy-saving and en...
Nitrate reduction reaction in an electrochemical system has recently supplied us with a new pathway ...
Chemical vapour impregnation was investigated as a novel preparation method for Ru/Al2O3 catalysts f...
Fe2O3 nanomaterials with controllable crystal phase and morphology have been successfully fabricated...
Controlled synthesis of iron oxide nanorods and application in deNOx reaction Xiaoling Mu1,Yong Li...
In this review, we present the recent progress in ammonia synthesis research using density functiona...
Developing highly active catalysts for the decomposition of ammonia to produce hydrogen is an import...
Due to the high energy needed to break the N ≡ N bond (945 kJ mol−1), a key step in ammonia producti...
The preparation process of industrial Fe-based catalysts for ammonia synthesis involves energy-inten...
Developing high-performance Fe-based ammonia catalysts through simple and cost-efficient methods has...
We showed recently that the catalytic efficiency of ammonia synthesis on Fe-based nanoparticles (NP)...
A range of Cs-doped Fe/Al2O3 catalysts were prepared for the ammonia decomposition reaction. Through...
Uniform and highly dispersed γ-Fe2O3 nanoparticles with a diameter of ∼6 nm supported on CMK-5 carbo...
Nitrogen can be electrochemically reduced to produce ammonia, which supplies an energy-saving and en...
Nitrate reduction reaction in an electrochemical system has recently supplied us with a new pathway ...
Chemical vapour impregnation was investigated as a novel preparation method for Ru/Al2O3 catalysts f...
Fe2O3 nanomaterials with controllable crystal phase and morphology have been successfully fabricated...
Controlled synthesis of iron oxide nanorods and application in deNOx reaction Xiaoling Mu1,Yong Li...
In this review, we present the recent progress in ammonia synthesis research using density functiona...
Developing highly active catalysts for the decomposition of ammonia to produce hydrogen is an import...
Due to the high energy needed to break the N ≡ N bond (945 kJ mol−1), a key step in ammonia producti...