Researchers from IMDEA Materials Institute have demonstrated improved and more affordable catalytic materials used to produce ...
Given the ubiquitous presence of water during catalyst synthesis, storage, and application, interactions between water and molecular sieves, along with their consequent effects on frameworks and ...
The field of catalysis, particularly in oxidation reactions, occupies a central role in modern chemistry and industrial processes. These reactions underpin energy conversion, environmental remediation ...
The discipline of Catalysis and Reaction Engineering (CRE) seeks to control and understand the networks of reactions that occur in ‘reactors’ ranging from cellular compartments up to world-scale ...
Catalysis is a fundamental process in chemical science whereby a catalyst accelerates a chemical reaction without itself being consumed. By providing an alternative reaction pathway with a lower ...
Platinum has long powered hydrogenation reactions across the chemical industry. But its cost and limited supply have pushed ...
For the first time, chemists have developed a titanium catalyst that makes light usable for selective chemical reactions. It provides a cost-effective and non-toxic alternative to the ruthenium and ...
Researchers develop an AI-based platform that integrates reaction data with catalyst performance for the design of new ...
7don MSN
A semicrystalline catalyst balances activity and stability for electrolytic hydrogen production
The production of clean hydrogen through water electrolysis is a promising route toward emission-free and sustainable energy ...
Researchers demonstrate a chemical reaction produced through an intermediary created by a separate chemical reaction, findings that could impact environmental remediation and fuel production. A ...
CatDRX is a generative AI framework developed at Institute of Science Tokyo, which enables the design of new chemical catalysts based on the specific chemical reactions in which they are used. The ...
In a recent study published in ACS Catalysis, researchers at Chiba University unveiled a redox-adaptive strategy that allows a single homogeneous cerium catalyst to catalyze two chemically distinct ...
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