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  1. 100,000-fold enhancement in the nonlinearity of Si

    Scientists at Osaka University show how to achieve a very strong nonlinear optical response in silicon nanostructures based on the photothermal effect. This ...

    存在位置 Research Info / 2020
  2. A close up on the real world — atomic migration under ambient conditions

    Osaka University researchers have reported an environmental transmission electron microscopy technique that has allowed in situ visualization of the atomic ...

    存在位置 Research Info / 2019
  3. A colossal step for electronics

    Scientists at Osaka University have created a thin-film resistor with a conductivity that can be controlled by exposing it to hydrogen and an external electric ...

    存在位置 Research Info / 2020
  4. A filter for environmental remediation

    Scientists at Osaka University discovered a new method for producing sodium titanate mats nanostructured in a seaweed-like morphology for filtering heavy metal ...

    存在位置 Research Info / 2020
  5. A flexible brain for AI

    Scientists at Osaka University developed a customizable computing device using nanofabricated switches than can be rewired to optimize AI applications using ...

    存在位置 Research Info / 2020
  6. A way to surmount supercooling

    Osaka University researchers study the use of nanoparticles to induce crystallization of supercooled aqueous solutions to clathrate hydrates. On the basis of ...

    存在位置 Research Info / 2021
  7. A world first! Visualizing atomic-scale structures with the optical force

    A team of scientists from Osaka University, Osaka Prefecture University, and Nagoya University created three-dimensional maps of the force fields around ...

    存在位置 Research Info / 2021
  8. Above the noise

    Osaka University researchers employed machine learning to remove the noise from experimental data without the need for “clean” examples. As a result, the team ...

    存在位置 Research Info / 2021
  9. Accessing high-spins in an artificial atom

    Osaka University researchers devise a method for measuring the high-spin state of up to four electrons confined on a tiny gallium arsenide quantum dot. This ...

    存在位置 Research Info / 2021
  10. All of the performance, none of the fuss: nitrile hydrogenation done right

    Osaka University researchers developed a nano-cobalt phosphide catalyst (nano-Co2P) for the hydrogenation of nitriles to primary amines. Nano-Co2P was stable ...

    存在位置 Research Info / 2020
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