Polymers are an essential component of power and telecommunications cables. Ram Ramachandran of Dow Wire and Cable, David Kiddoo of Alphagary Corporation, Dr Jennifer Rust of Borealis and Andreas Farkus of ABB will be ta...
Resulting from the collaboration between the Air
Liquide Group’s research teams and the Group’s customers, this
advanced precursor makes possible very high quality ruthenium deposits while
decreasing the cost of electronic components.
Eco-Snow Systems™, an affiliate of The Linde Group, has introduced a new, automated technology for cleaning image sensors.
Eco-Snow Systems is the leading supplier of automated, carbon dioxide (CO2) snow based cle...
After witnessing significant growth in the past three years, composites industry in Brazil is bracing for a slowdown in face of global economic downturn. However, opportunities exist for composites industry in Brazil bec...
Over the last several years, the demand for short fiber thermoplastic (SFT) composites has steadily increased, surpassing $4.3 billion in 2008. From automotive components to consumer goods to electrical applications, SFT...
A team of scientists at the U.S.
Department of Energy's (DOE) Brookhaven National Laboratory, in collaboration
with researchers from the University of Delaware and Yeshiva University, has
developed a new catalyst that could make ethanol-powered fuel cells feasible.
Thin film solar cells, based on non-toxic, abundant and air-stable silicon (Si) will probably, based on forecasts, dominate the photovoltaic market in the future and thus replace bulk Si from its leading position. This p...
The method, which is based on near-field microscopy, opens new avenues for analyzing mechanical properties of high-performance materials or for contact-free mapping of local conductivity in strain-engineered electronic devices
Engineers at Purdue and
Stanford universities have created stretchable electrodes to study how cardiac
muscle cells, neurons and other cells react to mechanical stresses from heart
attacks, traumatic brain injuries and other diseases.
Scientists at Penn State University
and the Virginia Commonwealth University have discovered a way to produce hydrogen
by exposing selected clusters of aluminum atoms to water. The findings are important
because they demonstrate that it is the geometries of these aluminum clusters,
rather than solely their electronic properties, that govern the proximity of
the clusters' exposed active sites.
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