A major breakthrough in liquid catalysis is transforming how essential products are made, making the chemical manufacturing ...
Listen to this article A research team led by Clemson University’s Ming Yang is laying the groundwork for a new way of extracting hydrogen from ammonia, a development the researchers say could […] ...
Researchers discover a way to potentially reduce CO2 emissions and decrease the need for chlorine to produce ethylene oxide — ...
11d
AZoM on MSNDecoding Catalytic Processes: Advancing FTIR Research with Iso-Potential Operando SpectroscopyJoin Bruker as they explore the challenges and methodology underlying the use of FTIR tools with iso-potential operando spectroscopy.
A major scientific breakthrough is set to change the way we make many everyday products—making the process faster, safer, and ...
Atmospheric nitrogen, with the aid of an iron catalyst, reacts with hydrogen to produce ammonia. That reaction produces lots ...
A round-trip journey of electrons: Electron catalysis enables direct fixation of N2 to azo compounds
Breakthrough in N2 activation! This study unveils an electron catalysis strategy that directly converts N2 into azo compounds under mild conditions—a game-changer for nitrogen fixation. By harnessing ...
Catalytic function and its efficiency play a significant role in industrial reactions, and consistent reforms are made in the methodology to enhance the large-scale synthesis of drugs, polymers ...
This symposium aims to highlight recent advances in organo- and organometallic catalysis for the hydroelementation of unsaturated systems within the following criteria: Designing catalysts for ...
Results that may be inaccessible to you are currently showing.
Hide inaccessible results