by | Sep 13, 2026 | 2D materials, Aerospace, AGM, Angstron Materials, Audio, Development, Investment, Products, Research
Researchers at Stony Brook University, part of the State University of New York (SUNY) system, have patented a new method for measuring dew point and detecting icing conditions using a graphene oxide film, offering a potentially far cheaper alternative to the...
by | Sep 12, 2026 | 2D materials, Aerospace, AGM, Angstron Materials, Audio, Development, Investment, Products, Research
Researchers at Harvard have demonstrated a way to protect quantum information using microscopic sound waves. By continuously surrounding a diamond-based qubit with mechanical vibrations, they extended its coherence time by roughly threefold. The same phonons could...
by | Sep 12, 2026 | 2D materials, Aerospace, AGM, Angstron Materials, Audio, Development, Investment, Products, Research
Researchers at the Daegu Gyeongbuk Institute of Science and Technology (DGIST), Hanbat National University, Chungnam National University, the Korea Institute of Industrial Technology, Kyungpook National University, and the Gumi Electronics and Information Technology...
by | Sep 11, 2026 | 2D materials, Aerospace, AGM, Angstron Materials, Audio, Development, Investment, Products, Research
Unconventional quantum theories may imply that time itself has a tiny fundamental uncertainty, placing an ultimate limit on how precisely any clock could measure it. The effect is far beyond current detection, but it could reveal a hidden connection between quantum...
by | Sep 11, 2026 | 2D materials, Aerospace, AGM, Angstron Materials, Audio, Development, Investment, Products, Research
Researchers at Nagoya University and RIKEN have developed a new two-step annulative Ï€-extension (APEX) method that grants access to a far broader range of structurally diverse nanographenes than previous approaches allow – including a rare, non-planar structure...