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Unveiling what governs crystal growth

Crystals are wonders of nature and science with important applications in electronics and optics. Scientists from Argonne have new insights into how gallium nitride crystals grow. Gallium nitride crystals are in wide use in light-emitting diodes (LEDs) and may form transistors for high-power switching electronics to make electric grids more energy efficient and smarter. ....

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Argonne senior chemist Robert Tranter named fellow of the Combustion Institute


Credit: (Image by Robert Tranter.)
Tranter explores the reactions of chemicals under high temperatures and pressures.
Senior chemist Robert (Rob) Tranter of the U.S. Department of Energy s (DOE) Argonne National Laboratory is no stranger to shockwave chemistry, but he received a happy shock of his own when he recently was named a Fellow of the Combustion Institute.
Members of the international combustion community who are named Fellows of the Combustion Institute are recognized by their peers as being distinguished for outstanding contributions to combustion science, whether in research or in applications.
Tranter is a member of Argonne s Gas-phase Chemical Dynamics group in the Chemical Sciences and Engineering division, in which he explores the reactions of different chemicals under high temperatures and pressures. To generate these temperatures and pressures, Tranter uses a shock tube an instrument containing a highly pressurized region of helium gas separated ....

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Lasers, levitation and machine learning make better heat-resistant materials


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IMAGE: Illustration of the aerodynamic levitation process for studying refractory oxides at their melting points at the APS. A small bead of material is buoyed by gas and heated up by.
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Credit: (Image by Ganesh Sivaraman/Argonne National Laboratory.)
Argonne scientists across several disciplines have combined forces to create a new process for testing and predicting the effects of high temperatures on refractory oxides.
Cast iron melts at around 1,200 degrees Celsius. Stainless steel melts at around 1,520 degrees Celsius. If you want to shape these materials into everyday objects, like the skillet in your kitchen or the surgical tools used by doctors, it stands to reason that you would need to create furnaces and molds out of something that can withstand even these extreme temperatures. ....

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