The University of Dayton Science and Engineering Catalyst Center (SECC) is designed to foster interdisciplinary research, scholarship, curriculum development and entrepreneurial activities to address ...
This schematic illustrates the comprehensive framework for advancing non-noble metal catalysts in acidic oxygen evolution reactions (OER). It highlights three core research questions—mechanism of ...
The conversion of carbon dioxide into clean fuels is regarded as an important route toward carbon neutrality. CO 2 methanation, in particular, has drawn increasing interest due to its favorable ...
A new catalyst design could transform how acetaldehyde is made from renewable bioethanol. Researchers found that a carefully balanced mix of gold, manganese, and copper creates a powerful synergy that ...
Iridium-based catalysts are widely used in green energy technologies, but existing methods to measure active sites on iridium catalysts are imprecise. New research from Northwestern Engineering’s ...
An international research team led by Professor Philip C.Y. Chow at The University of Hong Kong (HKU) has unveiled a new catalyst that overcomes a major challenge in producing green hydrogen at scale.
For decades, materials made of Nylon-6 have littered, entangled, and damaged ecosystems — and because this durable plastic does not breakdown for millenia, the situation continues to worsen.
Methanol steam reforming (MSR) has emerged as a highly promising process for on-site hydrogen production, offering a viable strategy for decarbonising energy systems. This process utilises methanol—a ...
The University of Dayton appointed Tam Nguyen and Brian Rigling ’98 as co-directors of its new Science and Engineering Catalyst Center, which brings together scientists and engineers to address ...
OXNARD, CA / ACCESS Newswire / April 16, 2026 / CDTi Advanced Materials, Inc. (CDTI) ("CDTi" or the "Company"), a leader in catalyst engineering and coating technology for emissions control, carbon ...
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