In a recent article, researchers from the University of Jyväskylä, Finland, emphasize the importance of multiscale modeling of catalysis in understanding and developing (electro)chemical processes.
Development of chiral catalysts Enantioselective C–C and C–X bond-forming reactions Different types of chirality (e.g., stereocenter, axial, planar, inherent, helical, torsional, topological) ...
Oxygen evolution is considered one of the most energy-intensive steps in water electrolysis and is therefore a key factor for more efficient green hydrogen production. Modeling of the reaction ...
Catalysis underpins modern fuel synthesis by improving reaction efficiency, reducing energy demand, and lowering production costs. Currently, global fossil ...
Catalysts are substances that speed up chemical reactions or allow them to occur at lower temperatures or pressures. 1 When catalysts are used to control and enhance reactions, the process is called ...
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