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NEWSROOM


Scientists develop predictive roadmap to boost performance in next-gen spintronics
Chiral 2D metal halide perovskites (MHPs) are among the most promising materials for future technologies that exploit the spin of electrons in spin-based optoelectronics or spintronics, but getting them to perform consistently has proven difficult. Now scientists at Lawrence Berkeley National Laboratory (Berkeley Lab) have developed a data-driven approach that identifies and models key synthesis parameters to optimize their performance.
Jul 13 min read


Scientists discover classical space-time crystals moving like Majorana quasiparticles
A research team from Hiroshima University, Hiroshima, Japan, the University of Colorado, Boulder, USA, and other collaborators has demonstrated that space-time crystals—exotic structures that, under external drive, loop endlessly through both space and time—can be created using everyday liquid-crystal materials.
Jun 293 min read


Nanotube-based thermoelectrics open a new pathway to waste-heat energy conversion
A research team has identified a mechanism that could help overcome the efficiency limitations of thermoelectric devices that convert waste heat into electricity using a “hollow silicon nanotube” structure. The findings were published in Nano Energy, a leading international academic journal in the field of energy and nanotechnology.
Jun 243 min read


Finnish bio-based materials project advances 100% cellulose-based film and coating technology as a scalable alternative to fossil-based packaging
VTT Technical Research Centre of Finland and LUT University have advanced fully cellulose-based film and coating materials through the F3 – Films for Future bio-based materials project, enabling the packaging industry to reduce and replace plastic while meeting performance and processing requirements. The materials combine plastic-like functionality with designed end-of-life performance: films are inherently biodegradable, while coatings are engineered for both recyclabilit
Jun 104 min read


A new way to move heat could transform energy and electronics
Researchers at Carnegie Mellon University, in collaboration with Stanford and Purdue, have demonstrated a powerful new way to control heat at the nanoscale. Using carefully engineered metamaterials — microscopic gold patterns on thin membranes — they achieved up to four times more heat transfer across a tiny gap compared to conventional setups.
May 293 min read


Stressed crystal creates nanoscale patterns on chip materials at room temperature
Rice University researchers have developed a simple new technique to create nanoscale patterns on hard chip materials at room temperature. By layering anisotropic alpha-molybdenum trioxide crystals on silica and exposing them to an electron beam, the team induced controlled stress that forms highly ordered nanoscale wrinkles or ripples.
May 263 min read
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