The exceptional catalytic performance of zeolites is due to the presence of active sites in a shape-selective environment, ie, in micropores with molecular dimensions. The present …
The intermittent nature of renewable resources requires for most applications the development of efficient and cost-effective technologies for steady supply of electrical …
The selective hydrogenation of CO2 to value-added chemicals is attractive but still challenged by the high-performance catalyst. In this work, we report that gallium nitride …
Capturing CO 2 and converting it into fuels or fine chemicals is a promising way to deal with climate change issues and energy crises. However, the conversion of CO 2 into …
Methanol dehydration process to dimethyl ether (DME) has been considered as one of the main routes to produce clean fuel, that is, DME. Thus, efficient catalysts are highly required …
Zeolites are promising catalysts that are widely used in petrochemical, oil, and gas industries due to their unique characteristics, such as ordered microporous networks, good …
Environmental pollution and global warming are pressing worldwide issues. Providing renewable and sustainable energy resources can reduce carbon extraction and release …
The modification of the physicochemical properties of synthetic zeolites is an important element when these materials are applied as heterogeneous catalysts in the view of more …
A significant boost to the catalytic technology of CO 2-to-DME hydrogenation in a single step was recently given by the design of novel hybrid multimetallic/zeolite systems. However, a …