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Nanotechnology Now - Press Release: New family of atomic-thin electride materials discovered 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.
An exploratory analysis of the behavior of materials with preferred electric characteristics led to the discovery of a structural phase of 2D materials. ....
E-Mail IMAGE: Yellow isosurfaces on left panel indicate electrons localized in-between the C3 trimers. Ionized structure on the right has no trapped electrons, and some of the M atoms have been largely. view more Credit: Soungmin Bae and Hannes Raebiger An exploratory investigation into the behavior of materials with desirable electric properties resulted in the discovery of a structural phase of two-dimensional (2D) materials. The new family of materials are electrides, wherein electrons occupy a space usually reserved for atoms or ions instead of orbiting the nucleus of an atom or ion. The stable, low-energy, tunable materials could have potential applications in nanotechnologies. ....
Lkhamsuren Ganchimeg (Gana) from Mongolia 1st-year doctoral degree student in the Department of Materials Science and Engineering, School of Materials and Chemical Technology Program: IGP (A), International Program for Interdisciplinary Science and Engineering (IPISE) Prior affiliation: National University Mongolia Why did you choose Tokyo Tech s IGP? I used to hear about Japanese universities being good at science and engineering before I came here. A lot of discoveries and technologies have been made in Japan. When I decided I wanted to study abroad, I started looking for universities especially in Japan. One great thing about Tokyo Tech was its official website. There was plenty of information on applying from overseas for someone with no background knowledge, and lots of details on the offered programs were available. ....
E-Mail IMAGE: Conceptual illustration of a compliant TEG with soft electrodes and soft heat conductors (s-HCs) for self-powered circuit applications. The left inset is a photograph of bismuth telluride (Bi2Te3)-based thermoelectric (TE). view more Credit: Korea Institute of Science and Technology(KIST) A thermoelectric device is an energy conversion device that utilizes the voltage generated by the temperature difference between both ends of a material; it is capable of converting heat energy, such as waste heat from industrial sites, into electricity that can be used in daily life. Existing thermoelectric devices are rigid because they are composed of hard metal-based electrodes and semiconductors, hindering the full absorption of heat sources from uneven surfaces. Therefore, recent studies were actively conducted on the development of flexible thermoelectric devices capable of generating energy in close contact with various heat sources such as human ....