Search Results - "Shimojo, Masayuki"

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  1. 1

    Improvement of High-Temperature Shape-Memory Effect by Multi-Component Alloying for TiPd Alloys by Matsuda, Hiromichi, Sato, Hirotaka, Shimojo, Masayuki, Yamabe-Mitarai, Yoko

    Published in MATERIALS TRANSACTIONS (01-11-2019)
    “…The influence of multi-component alloying on the phase transformation and shape-memory effect was investigated to develop new high-temperature shape memory…”
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  2. 2

    Microstructure Evolution and High-Temperature Mechanical Properties of Ti–6Al–4Nb–4Zr Fabricated by Selective Laser Melting by Kuroda, Tomoki, Masuyama, Haruki, Toda, Yoshiaki, Matsunaga, Tetsuya, Ito, Tsutomu, Watanabe, Makoto, Ozasa, Ryosuke, Ishimoto, Takuya, Nakano, Takayoshi, Shimojo, Masayuki, Yamabe-Mitarai, Yoko

    Published in MATERIALS TRANSACTIONS (01-01-2023)
    “…Ti–6Al–4Nb–4Zr (mass%) was prepared by selective laser melting (SLM) under various conditions, and the microstructure evolution resulting from SLM processing…”
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  3. 3

    Microstructural analysis and Transport Properties of MoO and MoC nanostructures prepared by focused electron beam-induced deposition by Makise, Kazumasa, Mitsuishi, Kazutaka, Shimojo, Masayuki, Shinozaki, Bunju

    Published in Scientific reports (18-07-2014)
    “…By electron-beam-induced deposition, we have succeeded in the direct fabrication of nanowires of molybdenum oxide (MoO x ) and molybdenum carbide (MoC) on a…”
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  4. 4

    Training Effect on Microstructure and Shape Recovery in Ti-Pd-Zr Alloys by Sato, Hirotaka, Kim, Hee Young, Shimojo, Masayuki, Yamabe-Mitarai, Yoko

    Published in MATERIALS TRANSACTIONS (01-01-2017)
    “…The training effect of microstructure and shape recovery on Ti-50Pd-xZr (x = 7 and 10) at% and Ti-50Pd-xZr-(5-x)V (x = 1, 2.5, and 4) high-temperature shape…”
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  5. 5

    Design of Zirconium Quaternary System Alloys and Their Properties by Ashida, Maki, Tsutsumi, Yusuke, Homma, Kou, Chen, Peng, Shimojo, Masayuki, Hanawa, Takao

    Published in MATERIALS TRANSACTIONS (01-04-2020)
    “…Two multicomponent β-type Zr alloys were designed using the d-electron alloy design method, and their mechanical properties, magnetic susceptibility, and…”
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  6. 6

    Broadband light absorber property of metal-coated pillars on cicada wings by Kobayashi, Mariko, Furusawa, Takaya, Chikuta, Taiki, Shimojo, Masayuki, Kajikawa, Kotaro

    Published in Optical materials express (01-07-2019)
    “…The surface of a gold-coated robust cicada wing, with nanometer-sized pillars as bristles, exhibits a broadband light absorber property (wavelengths of 400 –…”
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  7. 7

    Thermal Cyclic Properties of Ti-Pd-Pt-Zr High-Temperature Shape Memory Alloys by Tasaki, Wataru, Shimojo, Masayuki, Yamabe-Mitarai, Yoko

    Published in Crystals (Basel) (14-11-2019)
    “…In this study, the thermal cyclic properties of Ti-(50−x)Pd-xPt-5Zr alloys (x = 5, 15, 25, at%), comprising B2 and B19 structures in austenite and martensite,…”
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  8. 8

    Microstructure Evolution and Creep Behavior of Near-α Ti Alloy Produced by Thermomechanical Processing by Masuyama, Haruki, Shimagami, Kei, Toda, Yoshiaki, Matsunaga, Tetsuya, Ito, Tsutomu, Shimojo, Masayuki, Yamabe-Mitarai, Yoko

    Published in MATERIALS TRANSACTIONS (01-11-2019)
    “…A microstructure evolution based on the processing and heat-treatment conditions was investigated for Ti–13Al–2Nb–2Zr (at%) alloy, which has a promising…”
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  9. 9

    Biometamaterials: Black Ultrathin Gold Film Fabricated on Lotus Leaf by Ebihara, Yuusuke, Ota, Ryoichi, Noriki, Takahiro, Shimojo, Masayuki, Kajikawa, Kotaro

    Published in Scientific reports (04-11-2015)
    “…We report on a black metamaterial of gold fabricated on a lotus leaf that was used as a template. In spite of the extremely thin gold coating (10-nm thick) on…”
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  10. 10

    Effect of cold rolling on the magnetic susceptibility of Zr–14Nb alloy by Kondo, Ryota, Shimizu, Ryota, Nomura, Naoyuki, Doi, Hisashi, Suyalatu, Tsutsumi, Yusuke, Mitsuishi, Kazutaka, Shimojo, Masayuki, Noda, Kazuhiko, Hanawa, Takao

    Published in Acta biomaterialia (01-03-2013)
    “…The magnetic susceptibility of cold-rolled Zr–14Nb was evaluated to apply a new metallic medical device used for magnetic resonance imaging (MRI). The magnetic…”
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  11. 11

    Phase Transformation and Shape Memory Effect of Ti–Pd–Pt–Zr High-Temperature Shape Memory Alloys by Yamabe-Mitarai, Yoko, Takebe, Wataru, Shimojo, Masayuki

    “…To understand the potential of high-temperature shape memory alloys, we have investigated the phase transformation and shape memory effect of Ti–(50 −  x )Pt–…”
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  12. 12

    Patterning technique for gold nanoparticles on substrates using a focused electron beam by Noriki, Takahiro, Abe, Shogo, Kajikawa, Kotaro, Shimojo, Masayuki

    Published in Beilstein journal of nanotechnology (22-04-2015)
    “…We propose a novel patterning technique for gold nanoparticles on substrates that combines a chemical reaction with electron beam irradiation. First, gold…”
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  13. 13

    Fixation mechanisms of nanoparticles on substrates by electron beam irradiation by Morioka, Daichi, Nose, Tomohiro, Chikuta, Taiki, Mitsuishi, Kazutaka, Shimojo, Masayuki

    Published in Beilstein journal of nanotechnology (26-07-2017)
    “…For applications such as the fabrication of plasmonic waveguides we developed a patterning technique to fabricate an array of nanoparticles on a substrate…”
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  14. 14

    Nanoscale energy-filtered scanning confocal electron microscopy using a double-aberration-corrected transmission electron microscope by Wang, Peng, Behan, Gavin, Takeguchi, Masaki, Hashimoto, Ayako, Mitsuishi, Kazutaka, Shimojo, Masayuki, Kirkland, Angus I, Nellist, Peter D

    Published in Physical review letters (21-05-2010)
    “…We demonstrate that a transmission electron microscope fitted with two spherical-aberration correctors can be operated as an energy-filtered scanning confocal…”
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  15. 15

    Optical Response of Gold-Nanoparticle-Amplified Surface Plasmon Resonance Spectroscopy by Uchiho, Yuichi, Shimojo, Masayuki, Furuya, Kazuo, Kajikawa, Kotaro

    Published in Journal of physical chemistry. C (25-03-2010)
    “…A simple formalism that predicts optical constants of a two-dimensionally distributed nanoparticle (NP) thin film is presented for analysis of the NP-amplified…”
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  16. 16

    Three-dimensional analysis of nanoparticles on carbon support using aberration-corrected scanning confocal electron microscopy by Hashimoto, Ayako, Wang, Peng, Shimojo, Masayuki, Mitsuishi, Kazutaka, Nellist, Peter D., Kirkland, Angus I., Takeguchi, Masaki

    Published in Applied physics letters (17-12-2012)
    “…We observed Pt nanoparticles on carbon nanohorn aggregates by annular dark-field scanning confocal electron microscopy (ADF-SCEM) with an aberration-corrected…”
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  17. 17

    Three-dimensional elemental mapping of hollow Fe2O3@SiO2 mesoporous spheres using scanning confocal electron microscopy by Wang, Peng, Hashimoto, Ayako, Takeguchi, Masaki, Mitsuishi, Kazutaka, Shimojo, Masayuki, Zhu, Yufang, Okuda, Mitsuhiro, Kirkland, Angus I., Nellist, Peter D.

    Published in Applied physics letters (21-05-2012)
    “…Energy filtered scanning confocal electron microscopy (EFSCEM) in an aberration-corrected transmission electron microscope offers an approach for…”
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  18. 18
  19. 19

    Modeling of semi-shell nanostructures formed by metal deposition on dielectric nanospheres and numerical evaluation of plasmonic properties by Fujimura, Ryushi, Zhang, Ruzhi, Kitamoto, Yoshitaka, Shimojo, Masayuki, Kajikawa, Kotaro

    Published in Japanese Journal of Applied Physics (01-03-2014)
    “…A theoretical model of semi-shell structures formed by metal deposition is constructed for accurate prediction of plasmonic properties. Our model takes account…”
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  20. 20

    Direct acquisition of interferogram by stage scanning in electron interferometry by Lei, Dan, Mitsuishi, Kazutaka, Harada, Ken, Shimojo, Masayuki, Ju, Dongying, Takeguchi, Masaki

    Published in Microscopy (01-12-2013)
    “…We present an electron holography technique to acquire an interferogram, that is, cosine image of phase distribution. The interferogram is constructed by…”
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