Metal sites in zeolites: synthesis, characterization, and catalysis
Q Zhang, S Gao, J Yu - Chemical reviews, 2022 - ACS Publications
Zeolites with ordered microporous systems, distinct framework topologies, good spatial
nanoconfinement effects, and superior (hydro) thermal stability are an ideal scaffold for …
nanoconfinement effects, and superior (hydro) thermal stability are an ideal scaffold for …
Methane oxidation to methanol
The direct transformation of methane to methanol remains a significant challenge for
operation at a larger scale. Central to this challenge is the low reactivity of methane at …
operation at a larger scale. Central to this challenge is the low reactivity of methane at …
Advances in catalytic applications of zeolite‐supported metal catalysts
Zeolites possessing large specific surface areas, ordered micropores, and adjustable
acidity/basicity have emerged as ideal supports to immobilize metal species with small sizes …
acidity/basicity have emerged as ideal supports to immobilize metal species with small sizes …
Applications of zeolites to C1 chemistry: recent advances, challenges, and opportunities
C1 chemistry, which is the catalytic transformation of C1 molecules including CO, CO2, CH4,
CH3OH, and HCOOH, plays an important role in providing energy and chemical supplies …
CH3OH, and HCOOH, plays an important role in providing energy and chemical supplies …
Major routes in the photocatalytic methane conversion into chemicals and fuels under mild conditions
Methane is one of the most abundant molecules on Earth. Most of the state-of-the-art
methane chemical conversion technologies require high temperatures, they are …
methane chemical conversion technologies require high temperatures, they are …
Solar Cell-Powered Electrochemical Methane-to-Methanol Conversion with CuO/CeO2 Catalysts
Electrochemical CH4 oxidation is attractive as a strategy capable of conversion with high
selectivity, but improving productivity remains a challenge. We demonstrate that CuO/CeO2 …
selectivity, but improving productivity remains a challenge. We demonstrate that CuO/CeO2 …