Kyoto University · 공학
타카유키 야마다 교수의 연구실은 고에너지 천체물리학과 나노광학, 그리고 고성능 에너지 저장 소재를 융합한 다학제적 연구를 수행하고 있습니다. X선 천체망원경을 활용한 우주에서의 고에너지 현상 분석과 함께, 광결정 나노구조를 통한 강한 광물질 상호작용 설계, 그리고 리튬 이온 배터리 이외의 새로운 전지 시스템(특히 칼륨 이온 및 플루오르화 이온 전지)의 핵심 소재 개발에 주력하고 있습니다. 특히 고온·고압 조건에서의 이온 도핑 및 전도성 메커니즘 규명을 통해 실온에서 안정된 초이온 도핑 물질을 설계하는 데도 기여하고 있습니다.
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
Abstract We report on the in-orbit performance of the Gas Slit Camera (GSC) on the MAXI (Monitor of All-sky X-ray Image) mission carried on the International Space Station (ISS). Its commissioning operation, which started on 2009 August 8, confirmed the basic performances of the effective area in the energy band of 2–30 keV, the spatial resolution of the slit-and-slat collimator and detector with 1 $^\circ\!\!\!.$ 5 FWHM, the source visibility of 40–150 seconds for each scan cycle, and the sky c
We have presented a novel design of a photonic crystal slab (PCS) nanocavity, in which the electric field of the cavity mode is strongly localized in free space. The feature of the cavity is a linear air slot introduced to the center of the mode-gap confined PCS cavity. Owing to the discontinuity of the dielectric constant, the electric field of the cavity mode is strongly enhanced inside the slot, allowing strong matter-field coupling and large interaction volume in free space. Using finite-dif
The physicochemical and electrochemical properties of the binary ionic liquid, K[FSA]–[C3C1pyrr][FSA] (FSA = bis(fluorosulfonyl)amide; C3C1pyrr = N-methyl-N-propylpyrrolidinium), were investigated at 253–393 K, with the aim of developing a new electrolyte for potassium-ion batteries (K-ion batteries; KIBs). A phase diagram was constructed from the results of differential scanning calorimetry measurements and revealed that the melting point of this ionic liquid is below room temperature for compo
Abstract We report on the discovery of a cyclotron resonance scattering feature (CRSF) in the X-ray spectrum of GX 304 $-$ 1, obtained by RXTE and Suzaku during major outbursts detected by MAXI in 2010. The peak intensity in August reached 600 mCrab in the 2–20 keV band, which is the highest ever observed from this source. The RXTE observations on more than twenty occasions and one Suzaku observation revealed a spectral absorption feature at around 54 keV, which is the first CRSF detection from
Fluoride shuttle batteries (FSBs) are attracting considerable interest as next-generation energy storage devices, owing to their superior energy density. We focused on fluorohydrogenate ionic liquids (FHILs) as new electrolytes for FSBs operating at room temperature, because they show much higher ionic conductivities compared with those of conventional electrolytes. In the present study, the charge–discharge behavior of CuF2 positive electrodes was investigated in the [C2C1im][(FH)2.3F] (C2C1im
We performed variable-temperature synchrotron powder X-ray diffraction measurements and impedance spectroscopy under pressure for silver iodide (AgI) nanoparticles with a diameter of 11 nm. The superionic conducting α-phase of AgI nanoparticles was successfully stabilized down to at least 20 °C by applying a pressure of 0.18 GPa, whereas the transition temperature was 147 °C in bulk AgI at ambient pressure. To our knowledge, this is the first example of the α-phase of AgI existing stably at room
In this study, submicron-sized tin particles were used as the negative electrode material for potassium secondary batteries. With a bis(fluorosulfonyl)amide-based ionic liquid electrolyte, K[FSA]-[C3C1pyrr][FSA], the tin negative electrodes showed improved capacity retention of over 170 mA h (g-Sn)-1 after 100 cycles at room temperature.
A summary of the material and tribological properties of amorphous carbon films for the overcoat of thin film media is presented. Two families of film are considered. One is the family of sputtered DLC film including amorphous carbon, amorphous hydrogenated, and nitrogenated carbon films, which are all widely used as overcoats for commercially available thin film media. The other film is amorphous hydrogenated carbon film, which is deposited by hot filament plasma CVD and is being developed for
Potassium-ion batteries (K-ion batteries; KIBs) are attractive as high-voltage, low-cost energy storage devices. Ionic liquids (ILs) are potential candidates as safe and high-performance electrolytes for large-scale devices. Imidazolium-based ILs are known to possess high ionic conductivities and moderate electrochemical stabilities. In this study, we report the physicochemical and electrochemical properties of K[FSA]–[C2C1im][FSA] (FSA = bis(fluorosulfonyl)amide; C2C1im = 1-ethyl-3-methylimidaz
We developed a Stiction Free Slider that has pads on the air bearing surface to reduce the stiction between the head and disk. This paper presents our extended experimental data on the SFS for use on lightly textured disks. The SFS shows excellent CSS performances on disks having an average roughness of 0.8 nm with 1.5 -2.5 nm thick lubricant. The wear of pads is negligible after 100,000 Contact Start/Stop cycles. This novel technique has an excellent potential to overcome the tribology obstacle
PLANET-B is the Japanese Mars orbiter program. The spacecraft will begin its journey to Mars in July 1998, and will be inserted into Mars orbit in October 1999. It will collect data for at least one Martian year (about two Earth years). The primary objective of the program is to study the Martian aeronomy, with emphasis on the interaction of the Martian upper atmosphere with the solar wind. The periapsis altitude and the apoapsis distance are 150 km and 15 Mars radii, respectively. The dry weigh