A novel catalyst consisting of gold nanoparticles supported on an uncalcined (with template in) titanium silicalite-1 (Au/U-TS-1) and having a very long (similar to 10-20 h) and unique activation period for gas-phase propylene epoxidation in the presence of H-2 and O-2 is reported. Propylene oxide (PO) rate per gram of catalyst, H2 selectivity, and BET apparent surface area of the catalyst were all found to increase during the course of activation, indicating that the number of the active sites in the Au/U-TS-1 for the PO reaction increased together with the formation of nanopores near the surface of the U-TS-1. The activated Au/U-TS-1 catalysts showed high stability and slightly higher H-2 selectivity (similar to 40% vs. similar to 25%) re...
Direct propylene epoxidation using Au-based catalysts is an important gas-phase reaction and is clea...
Designing a stable and selective catalyst with high H2 utilisation is of pivotal importance for the ...
Many gold nanoparticle catalysts on titania, silica, and titanosilicate supports are compared in the...
Nano gold particles supported on titanium silicalite-1 catalysts (Au/TS-1) have shown high propylene...
Propylene oxide (PO) is one of the most synthesized chemicals because of its use in the production o...
A single-step, direct catalytic partial oxidation of propylene to propylene oxide (PO) via co-feedin...
The nature of gold active sites on Au–Ti catalysts dictates the reactivity and selectivity during pr...
Gold clusters supported on titanium silicalite-1 (hereafter denoted as Au/TS-1) with high gold loadi...
The conversion of propylene to propylene epoxide (PO) is a reaction of great industrial importance, ...
Propylene oxide (PO), is a key intermediate in the production of value-added products, such as polyu...
Direct epoxidation of propylene (C3H6) with oxygen (O-2) and hydrogen (H-2) over gold catalysts is a...
Au/TS-1 catalysts prepared by deposition–precipitation method are very promising for direct propylen...
Developing stable yet efficient Au–Ti bifunctional catalysts is important but challenging for direct...
A series of Au/TS-1 catalysts with varying gold and titanium contents was prepared by deposition–pre...
A series of Au/TS-1 catalysts with varying gold and titanium contents was prepared by deposition–pre...
Direct propylene epoxidation using Au-based catalysts is an important gas-phase reaction and is clea...
Designing a stable and selective catalyst with high H2 utilisation is of pivotal importance for the ...
Many gold nanoparticle catalysts on titania, silica, and titanosilicate supports are compared in the...
Nano gold particles supported on titanium silicalite-1 catalysts (Au/TS-1) have shown high propylene...
Propylene oxide (PO) is one of the most synthesized chemicals because of its use in the production o...
A single-step, direct catalytic partial oxidation of propylene to propylene oxide (PO) via co-feedin...
The nature of gold active sites on Au–Ti catalysts dictates the reactivity and selectivity during pr...
Gold clusters supported on titanium silicalite-1 (hereafter denoted as Au/TS-1) with high gold loadi...
The conversion of propylene to propylene epoxide (PO) is a reaction of great industrial importance, ...
Propylene oxide (PO), is a key intermediate in the production of value-added products, such as polyu...
Direct epoxidation of propylene (C3H6) with oxygen (O-2) and hydrogen (H-2) over gold catalysts is a...
Au/TS-1 catalysts prepared by deposition–precipitation method are very promising for direct propylen...
Developing stable yet efficient Au–Ti bifunctional catalysts is important but challenging for direct...
A series of Au/TS-1 catalysts with varying gold and titanium contents was prepared by deposition–pre...
A series of Au/TS-1 catalysts with varying gold and titanium contents was prepared by deposition–pre...
Direct propylene epoxidation using Au-based catalysts is an important gas-phase reaction and is clea...
Designing a stable and selective catalyst with high H2 utilisation is of pivotal importance for the ...
Many gold nanoparticle catalysts on titania, silica, and titanosilicate supports are compared in the...