New Method to Design Nanomaterials with Less than 10-Nanometer Precision
This article will explore a novel method that has the potential to design nanomaterials with less than 10 nm precision.
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This article will explore a novel method that has the potential to design nanomaterials with less than 10 nm precision.
Student Arne Quellmalz is working on technologies that could replace the typically bulky, expensive, and high-energy-consuming gas sensors available today. Using graphene and innovative integration techniques, Quellmatz’s research could lead to the manufacture of gas sensors that are small and cheap
Credit: Daria Sokol/MIPT Press Office Researchers of the Center for Photonics and Two-Dimensional Materials at MIPT, together with their colleagues from Spain, Great Britain, Sweden, and Singapore, including co-creator of the world's first 2D material and Nobel laureate Konstantin Novoselov, have measured giant optical anisotropy in layered molybdenum disulfide crystals for the first time. The scientists suggest that such transition metal dichalcogenide crystals will replace silicon in photonics. Birefringence with a giant difference in refractive indices, characteristic of these substances,...