The preferred location and the corresponding energetics of zeolite-embedded single metal atoms and small metal particles are hot topics within active site optimization and catalyst tuning, even as part of bifunctional materials design. In this context, periodic density functional theory was used to provide insights on the interactions of a platinum atom with the microporous cages of a purely silicious β-zeolite (BEA) framework. Cluster growth was subsequently addressed, up to Pt3@BEA systems, following a one-by-one platinum atom addition; platinum migration between cages was taken into account as well. An unbiased approach was employed, which allowed a wide panorama of structures being considered in addition to a thorough analysis in terms ...
To develop structure–performance relationships for important catalysts, a detailed characterization ...
The selective encapsulation of metal clusters within zeolites can be used to prepare clusters that a...
Pt supported on BaKL zeolite was characterized by TEM, H chemisorption, and EXAFS spectroscopy. The ...
Single metal atoms and metal clusters have attracted much attention thanks to their advantageous cap...
The location of Pt nanoparticles was studied in Pt/zeolite Y/γ-Al 2O 3 composite catalysts prepared ...
The turnover frequency (TOF) for conversion of neo-pentane was determined for Pt in Y zeolite with d...
The location of Pt nanoparticles was studied in Pt/zeolite Y/γ-Al2O3 composite catalysts prepared by...
In this study, Pt nanoparticles on zeolite/γ-Al2O3 composites (50/50 wt) were located either in the ...
Zeolites are the most widely used catalysts in industry due to a unique combination of features such...
Fuel cells have been demonstrated to be promising power generation devices to address the current gl...
[EN] We report the encapsulation of platinum species in highly siliceous chabazite (CHA) crystallize...
A series of catalysts prepared by Pt deposition over intimate mixtures of HUSY and HBEA zeolites was...
While organic structure directing agents (OSDAs) are well known to have a directional influence on t...
Improving product selectivity by controlling the spatial organization of functional sites at the nan...
To develop structure–performance relationships for important catalysts, a detailed characterization ...
The selective encapsulation of metal clusters within zeolites can be used to prepare clusters that a...
Pt supported on BaKL zeolite was characterized by TEM, H chemisorption, and EXAFS spectroscopy. The ...
Single metal atoms and metal clusters have attracted much attention thanks to their advantageous cap...
The location of Pt nanoparticles was studied in Pt/zeolite Y/γ-Al 2O 3 composite catalysts prepared ...
The turnover frequency (TOF) for conversion of neo-pentane was determined for Pt in Y zeolite with d...
The location of Pt nanoparticles was studied in Pt/zeolite Y/γ-Al2O3 composite catalysts prepared by...
In this study, Pt nanoparticles on zeolite/γ-Al2O3 composites (50/50 wt) were located either in the ...
Zeolites are the most widely used catalysts in industry due to a unique combination of features such...
Fuel cells have been demonstrated to be promising power generation devices to address the current gl...
[EN] We report the encapsulation of platinum species in highly siliceous chabazite (CHA) crystallize...
A series of catalysts prepared by Pt deposition over intimate mixtures of HUSY and HBEA zeolites was...
While organic structure directing agents (OSDAs) are well known to have a directional influence on t...
Improving product selectivity by controlling the spatial organization of functional sites at the nan...
To develop structure–performance relationships for important catalysts, a detailed characterization ...
The selective encapsulation of metal clusters within zeolites can be used to prepare clusters that a...
Pt supported on BaKL zeolite was characterized by TEM, H chemisorption, and EXAFS spectroscopy. The ...