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Breakthrough Nanoceramics Show Promise in Enhancing Smartphone and TV Display Technology

Scientists from the Ural Federal University, together with colleagues from India and the Ural Branch of the Russian Academy of Sciences, have developed a nanoceramic that glows in three main colors - red, green, and blue. The new material is extremel

Russia
India
Mural
Sverdlovskaya-oblast
Russian
Arseny-kiryakov
Yulia-kuznetsova
Russian-science-foundation
Department-of-physical-techniques
Russian-academy-of-sciences
Ural-branch
Ural-federal-university

Nanotechnology Now - Press Release: Nanoscale chemically ordered-disordered domains in Fe3Pt alloys and their three-dimensional interface and lattice strain

Nanotechnology Now - Press Release: Nanoscale chemically ordered-disordered domains in Fe3Pt alloys and their three-dimensional interface and lattice strain
nanotech-now.com - get the latest breaking news, showbiz & celebrity photos, sport news & rumours, viral videos and top stories from nanotech-now.com Daily Mail and Mail on Sunday newspapers.

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Beijing
Qiang-li
Zhejiang
Xianran-xing
Bei-yan
Institute-of-solid-state-chemistry
University-of-science
Innovation-center
Science-china
National-science
Science-china-press

Ural Federal University scientists developed a new way of synthesis of high-purity zircon

 E-Mail IMAGE: The zircon synthesized can be used as a reference sample for spectroscopic studies in mineralogy. view more  Credit: Ural Federal University The scientific novelty of the work of scientists from Ural Federal University, Institute of Solid State Chemistry and Geology and Geochemistry of the Ural Branch of the Russian Academy of Sciences lies in the fact that for the first time scientists solved the task of creating zircon with certain spectral properties. To this end, they have worked out the so-called sol-gel method. It is distinguished by its technological simplicity, controllability of processes and allows synthesizing a larger volume of products with high purity than with other methods.

Yekaterinburg
Sverdlovskaya-oblast
Russia
Russian
Dmitry-zamyatin
Research-laboratory
Urfu-institute-of-physics
Institute-of-solid-state-chemistry
Ural-federal-university
Solid-state-chemistry
Ural-branch
Russian-academy

Solid-State Light Converters Optimized for High-Power LED Systems

Solid-State Light Converters Optimized for High-Power LED Systems Written by AZoOpticsJan 27 2021 Materials scientists from Far Eastern Federal University (FEFU) worked with an international team of researchers team to optimize the design of composite ceramic materials (Ce 3+:YAG-Al 3), that is, solid-state light converters (phosphors) that can be employed in-ground and aerospace technologies. The microstructure of a composite ceramic phosphor, and the appearance of an LED device based on it. Image Credit: Far Eastern Federal University. The LED system was created based on the developed materials to save 20% to 30% more energy than the commercial equivalents. An article related to this study was published in the

China
Shanghai
Russia
Russian
Chinese
Anastasia-vornovskikh
Denis-kosyanov
Eastern-federal-university
Institute-of-solid-state-chemistry
Shanghai-institute-of-ceramics
Polytechnic-institute
University-of-the-chinese-academy-sciences

Scientists developed energy saving ceramic phosphors for high power LED systems

 E-Mail IMAGE: The microstructure of a composite ceramic phosphor, and the appearance of an LED device based on view more  Credit: Denis Kosyanov, FEFU Materials scientists of Far Eastern Federal University (FEFU), in collaboration with an international research team, have advanced the design of composite ceramic materials (Ce3+:YAG-Al2O3), i.e. solid-state light converters (phosphors) that can be applied in-ground and aerospace technologies. The LED systems based on the developed materials to save 20-30 percent more energy compared to commercial analogues. A related article was published in Materials Characterization. Over 15% of the total global electricity production or about $ 450 billion annually spent on lighting. According to the photonics development roadmap run in Russia, the development of LED technology with an efficiency of more than 150 lm/W will allow to release up to 30% of electricity by 2025.

China
Shanghai
Russia
Russian
Chinese
Anastasia-vornovskikh
Denis-kosyanov
Eastern-federal-university
Institute-of-solid-state-chemistry
Shanghai-institute-of-ceramics
Polytechnic-institute
University-of-the-chinese-academy-sciences

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