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Imperial-Science Tokyo Global Fellows Programme 2025 *, a weeklong, training camp-style exchange programme bringing together Imperial and Science Tokyo doctoral students in various fields under the ...
A new D-band CMOS transceiver chipset with 56 GHz signal-chain bandwidth achieves the highest transmission speed of 640 Gbps for a wireless device realized with integrated circuits, as reported by ...
Moreover, BBCube 3D also represents a major breakthrough in terms of the bit access energy. "Due to the BBCube's low thermal resistance and low impedance, the thermal management and power supply ...
Penguins generate centripetal force when turning by pointing their belly inwards and moving their wings asymmetrically, as shown by scientists at Tokyo Tech. Their findings shed light on the ...
The issue of battery usage inefficiency in electric vehicles resulting from an inaccurate battery charge measurement may finally get resolved, thanks to a diamond quantum sensor prototype developed in ...
Tokyo Institute of Technology (Tokyo Tech) and EX-Fusion Inc. (EX-Fusion) have established a Collaborative Research Cluster focused on advancing liquid metal devices [1] for the realization of ...
(左から)菅野了次特命教授、堀智特任准教授 要点 伝導率が世界最高の固体電解質の超リチウムイオン伝導体を開発。 開発した材料を用いて電極面積あたりの容量が現行の1.8倍の厚膜正極を作製し、優れた電池特性を実証。 開発した厚膜正極と次世代電池材料として注目されているリチウム ...
The discovery of Ba 2 LuAlO 5 as a promising proton conductor paints a bright future for protonic ceramic fuel cells, report scientists from Tokyo Tech. Experiments show that this novel material has a ...
The Haber-Bosch process, which is commonly used to synthesize ammonia (NH 3)–the foundation for synthetic nitrogen fertilizers–by combining hydrogen (H 2) and nitrogen (N 2) over catalysts at high ...
Proteins have various functions in vivo that can potentially be applied to pharmaceuticals and nanomaterials as a naturally-derived material. A research group of doctoral student Kosuke Kikuchi and ...
Au-decorated BiFeO 3 nanocrystals are promising, efficient, and sustainable photocatalysts for environmental pollutant degradation, as shown by scientists at Tokyo Tech. Their findings on the ...
要点 従来の材料より175倍高い酸化物イオン(O2−)伝導度を持つBa7Nb3.8Mo1.2O20.1を創製 新材料は高いプロトン(H+)伝導度、高い安定性、希土類や鉛を含まないこと、低い焼結温度という低環境負荷といった特徴も持つ バケツリレー型超高速酸化物イオン伝導などの、新しいイオン伝導機構を ...
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