ResOU
詳細検索
  • ログイン
  • ホーム
現在位置:
  1. ホーム
アイテムタイプ
ある時点以降の新しいアイテム

検索結果

8 アイテムが検索語に該当します
ソート基準 関連性 日付(新しいもの順) アルファベット順
  1. Three-dimensional Direction-dependent Force Measurement at the Subatomic Scale

    Osaka University and collaborators have developed a new atomic force microscopy (AFM) technique that can measure the three-dimensional force fields of atoms. ...

    存在位置 Research Info / 2017
  2. Exploring the Conversion of Heat to Electricity in Single Molecules

    Researchers at Osaka University investigated the influence of the geometry of single-molecule devices on their ability to produce electricity from heat. They ...

    存在位置 Research Info / 2017
  3. Solar Material for Producing Clean Hydrogen Fuel

    A Japanese research team led by Osaka University developed a solar-active material for producing hydrogen fuel. The material is based on lanthanum titanium ...

    存在位置 Research Info / 2017
  4. Physicists Achieve Rapid Magnetic Switching with Lasers

    An Osaka University-led research group use an advanced synchrotron measurement system to probe how laser pulses affect the magnetism of ferrimagnetic materials ...

    存在位置 Research Info / 2017
  5. Ultrathin black phosphorus for solar-driven hydrogen economy

    Osaka University researchers combined two different types of 2D materials—black phosphorus and bismuth vanadate—to form a biologically inspired water-splitting ...

    存在位置 Research Info / 2018
  6. Silicon nanoblock arrays create vivid colors with subwavelength resolution

    Osaka University researchers demonstrated a range of highly tunable vivid color pixels controlled by the geometry of a monocrystalline silicon metamaterial ...

    存在位置 Research Info / 2018
  7. Hope for New Catalysts with High Activity

    Osaka University scientists elucidated the activation mechanism of NPG catalysts that made poisonous CO gas harmless.

    存在位置 Research Info / 2018
  8. Powered by Windows: Enhanced Power Factor in Transparent Thermoelectric Nanowire Materials

    A research group led by Professor Yoshiaki Nakamura of Osaka University successfully developed a methodology for enhancing thermoelectric power factor while ...

    存在位置 Research Info / 2018
Plone® オープンソース CMS/WCM の著作権 © 2000- 2026 は Plone Foundation と支持者にあります。 GNU GPL license の下で配布されています。
Powered by Plone & Python
  • サイトマップ
  • アクセシビリティ
  • お問い合わせ