Developing high-performance Fe-based ammonia catalysts through simple and cost-efficient methods has received an increased level of attention. Herein, we report for the first time, the synthesis of two-dimensional (2D) FeOOH nanoflakes encapsulated by mesoporous SiO2 (mSiO2) via a simple solution-based method for ammonia synthesis. Due to the sticking of the mSiO2 coating layers and the limited spaces in between, the Fe after reduction retains the 2D morphology, showing high resistance against the sintering in the harsh Haber–Bosch process. Compared to supported Fe particles dispersed on mSiO2 spheres, the coated catalyst shows a significantly improved catalytic activity by 50% at 425 °C. Thermal desorption spectroscopy (TDS) reveals the ex...
Iron sulfides are key materials in metalloprotein catalysis. One interesting aspect of iron sulfides...
The development of electrocatalysts for N2 reduction reaction (NRR) is significant for scalable and ...
Designing MoS2 nanocatalysts rich with active edge sites by engineering of the nanostructures is an ...
Developing high-performance Fe-based ammonia catalysts through simple and cost-efficient methods has...
The preparation process of industrial Fe-based catalysts for ammonia synthesis involves energy-inten...
International audienceElectrochemical synthesis of NH3 is a carbon-free alternative to the tradition...
Uniform and highly dispersed γ-Fe2O3 nanoparticles with a diameter of ∼6 nm supported on CMK-5 carbo...
We showed recently that the catalytic efficiency of ammonia synthesis on Fe-based nanoparticles (NP)...
High‐temperature, stable core–shell catalysts for ammonia decomposition have been synthesized. The h...
Active and stable catalysts for ammonia decomposition were obtained by deposition of Fe(5 wt%)\u2013...
Electrochemical synthesis of NH3 is a carbon-free alternative to the traditional Haber–Bosch process...
Nitrogen can be electrochemically reduced to produce ammonia, which supplies an energy-saving and en...
Our previously fabricated amino-functionalized silica nanoparticles (NPs) with center-radially hiera...
Using density-functional calculations, we investigate the possibility of ammonia synthesis at suppor...
Electrochemical N2 reduction reaction (NRR) emerges as a highly attractive alternative to the Haber-...
Iron sulfides are key materials in metalloprotein catalysis. One interesting aspect of iron sulfides...
The development of electrocatalysts for N2 reduction reaction (NRR) is significant for scalable and ...
Designing MoS2 nanocatalysts rich with active edge sites by engineering of the nanostructures is an ...
Developing high-performance Fe-based ammonia catalysts through simple and cost-efficient methods has...
The preparation process of industrial Fe-based catalysts for ammonia synthesis involves energy-inten...
International audienceElectrochemical synthesis of NH3 is a carbon-free alternative to the tradition...
Uniform and highly dispersed γ-Fe2O3 nanoparticles with a diameter of ∼6 nm supported on CMK-5 carbo...
We showed recently that the catalytic efficiency of ammonia synthesis on Fe-based nanoparticles (NP)...
High‐temperature, stable core–shell catalysts for ammonia decomposition have been synthesized. The h...
Active and stable catalysts for ammonia decomposition were obtained by deposition of Fe(5 wt%)\u2013...
Electrochemical synthesis of NH3 is a carbon-free alternative to the traditional Haber–Bosch process...
Nitrogen can be electrochemically reduced to produce ammonia, which supplies an energy-saving and en...
Our previously fabricated amino-functionalized silica nanoparticles (NPs) with center-radially hiera...
Using density-functional calculations, we investigate the possibility of ammonia synthesis at suppor...
Electrochemical N2 reduction reaction (NRR) emerges as a highly attractive alternative to the Haber-...
Iron sulfides are key materials in metalloprotein catalysis. One interesting aspect of iron sulfides...
The development of electrocatalysts for N2 reduction reaction (NRR) is significant for scalable and ...
Designing MoS2 nanocatalysts rich with active edge sites by engineering of the nanostructures is an ...