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  1. Made to Degrade (Eventually)

    A research team led by Osaka University developed a high-strength marine biodegradable plastic sheet by combining two ubiquitous biomass resources, starch and ...

    存在位置 Research Info / 2020
  2. 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
  3. Planetary ball-milling helps protect our planet from plastics pollution

    Researchers at Osaka University have developed supramolecular polymeric materials that combine rapid self-healing with high toughness by using the efficient ...

    存在位置 Research Info / 2020
  4. Pulp succeeded in diet? Determining the slenderization of wood pulp

    Osaka University scientists devise a system for measuring the quality of nanofibrillation for wood pulp using its natural optical birefringence. This work may ...

    存在位置 Research Info / 2020
  5. Electrons hop to it on twisted molecular wires

    Osaka University scientists show how purposely introducing twists into molecular wires can improve their electrical conductivity. This work may lead to cheaper ...

    存在位置 Research Info / 2021
  6. Nanodiamonds feel the heat

    Scientists from Osaka University, The University of Queensland, and the Faculty of Engineering at the National University of Singapore have created ...

    存在位置 Research Info / 2021
  7. From dinner to sustainable electronics, the surprising versatility of crabs

    Osaka University researchers have developed 3D porous nanocarbon materials through the pyrolysis of chitin nanofiber papers derived from crab shells. The ...

    存在位置 Research Info / 2021
  8. Diversity and universality of jamming

    Researchers at Osaka University and Chinese Academy of Science studying maximally efficient packing showed that jamming transitions with random spheres follows ...

    存在位置 Research Info / 2021
  9. A winning combination for glycoprotein synthesis

    Researchers from Osaka University developed a diacyl disulfide coupling method for synthesizing glycoproteins. The process was rapid and robust and produced ...

    存在位置 Research Info / 2021
  10. Virtually unlimited solar cell experiments

    Osaka University researchers virtually screened over 200,000 pairs of molecules for use in photovoltaic cells based on a machine learning algorithm, and ...

    存在位置 Research Info / 2021
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