Research Achievements | Tohoku University Global COE Program - Materials Integration -

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Research Achievements

 Research Achievements


2010.09  Spin-Seebeck effect in insulators and insulator-based thermoelectric generationf
(Saitoh Lab., IMR)
2010.09  Final Conclusion is Achieved on the Mechanism of Magnetism by Supercomputer
(Kawazoe Lab., IMR)
2010.07  Development of a new nanocrystalline soft magnetic material exhibiting ultra low electric power loss and high magnetic flux density, toward practical applications
(Makino Lab., IMR)
2010.06  Enhanced output power in ZnO Ultraviolet Light Emitting Diodes
(Kawasaki Lab., WPI)
2010.04  Crystal lenses focusing X-rays with an over 100 gain. - possible to simultaneous analyses of several elements -
(Nakjima Lab., IMR)
2010.03  Ultimate structure and composition of lithium niobate (LiNbO3) for superior optical properties
(Uda Lab., IMR)
2010.03  Spin current and electric signal transmission in insulator
(Saitoh Lab., IMR)
2009.01  Synthesis of a hydride with lithium fast-ion conductivity at room temperature
(School of Engineering MAEKAWA lab.)(/A)
(School of Engineering TAKAMURA lab.)(/A)
(Institute for Materials Research ORIMO lab.)(/A)
2008.11  Discovery of the modification of the organic Mott insulators to the electronic conductive metal by x-ray irradiation
(Institute for Materials Research, KOBAYASHI Lab)
2008.11  Development of a TiO2-based spintronics material for room temperature transparent spintronics devices
(WPI Advanced Institute for Materials Research, KAWASAKI Lab)
2008.10  Superconductivity induced by an electric field-effect method in an insulator
(WPI Advanced Institute for Materials Research, KAWASAKI Lab)
(Institute for Materials Research, IWASA Lab)
(Center for Low Temperature Science, NOJIMA Group)
2008.10  Discovery of the spin Seebeck effect--Thermal creation of the magnetic flow--
(Institute for Materials Research MAEKAWA Lab)
2008.09  High-responsivity visible-blind UV photo-detectors with conducting polymer /ZnO Schottky contacts
(WPI Advanced Institute for Materials Research, KAWASAKI Lab)
2008.09  Developing of New Alloy Process Technology Lowers Costs of Large LCD Panels
(School of Engineering Junnichi KOIKE Lab)
2008.07  Fabrication of rutile TiO2 with enhanced photocatalytic activity, water absorptivity and superhydrophilicity by anodic oxidation technique
iMASAHASHI Lab , Osaka Center for Industrial Materials Researchj
2008.05  Prediction of "ferromagnetic Josephson resonance"
(Institute for Materials Research MAEKAWA Lab)
2008.03 Emission characteristics of Grimm-style glow discharge plasmas with helium matrix plasma gas containing small amounts of nitrogen Machiko Tsukiji, Kazuaki Wagatsuma Microchemical J., 87 (2007) 175-179
(Institute for Materials Research WAGATSUMA Lab)
2008.01 Giant spin Hall effect in perpendicularly spin-polarized
(Institute for Materials Research TAKANASHI Lab)
(Institute for Materials Research MAEKAWA Lab)
2007.11 Li superionic conductivity in hydride
(Institute for Materials Research ORIMO Lab)
(School of Engineering TAKAMURA Lab)
2007.09 Different drive mechanisms of domain wall motion -Step toward MRAM-
(Institute for Materials Research MAEKAWA Lab)
2007.09 Formation mechanism of dendrite crystals with parallel twins and its implementation to the crystal growth method to realize high-quality Si multicrystals for solar cell applications
(Institute for Materials Research NAKAJIMA Lab)