Search Results - "Imagawa, Kaori"

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  1. 1

    Morphology Control of Porous Cellulose Particles by Tuning the Surface Tension of Media during Drying by Omura, Taro, Imagawa, Kaori, Suzuki, Toyoko, Minami, Hideto

    Published in Langmuir (18-12-2018)
    “…We previously reported the preparation of cellulose particles by the solvent releasing method (SRM). The obtained cellulose particles had a porous structure…”
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    Journal Article
  2. 2

    Encapsulation of Either Hydrophilic or Hydrophobic Substances in Spongy Cellulose Particles by Omura, Taro, Imagawa, Kaori, Kono, Kyosuke, Suzuki, Toyoko, Minami, Hideto

    Published in ACS applied materials & interfaces (11-01-2017)
    “…We have reported cellulose particles with a spongy structure that we prepared by the solvent releasing method (SRM) from cellulose droplets composed of…”
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    Journal Article
  3. 3

    Preparation of Cellulose/Silver Composite Particles Having a Recyclable Catalytic Property by Fujii, Yuki, Imagawa, Kaori, Omura, Taro, Suzuki, Toyoko, Minami, Hideto

    Published in ACS omega (04-02-2020)
    “…We reported the preparation of porous cellulose particles by the solvent-releasing method, in which a solution of cellulose, dissolved in…”
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  4. 4

    Preparation of disk-like cellulose particles by Imagawa, Kaori, Omura, Taro, Ihara, Yasuhito, Kono, Kyosuke, Suzuki, Toyoko, Minami, Hideto

    Published in Cellulose (London) (01-08-2017)
    “…Disk-like cellulose particles were facilely prepared by stirring a dispersion of spongy cellulose particles that were prepared with a solvent-releasing method…”
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  5. 5

    Interfacial Synthetic Approach for Constructing Metal–Organic Framework Crystals Using Metal Ion-Doped Polymer Substrate by Tsuruoka, Takaaki, Kumano, Misato, Mantani, Koji, Matsuyama, Tetsuhiro, Miyanaga, Ayumi, Ohhashi, Takashi, Takashima, Yohei, Minami, Hideto, Suzuki, Toyoko, Imagawa, Kaori, Akamatsu, Kensuke

    Published in Crystal growth & design (04-05-2016)
    “…We report a new paradigm for the synthesis of metal–organic framework (MOF) crystals with controlled thickness by utilizing interfacial self-assembly of…”
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    Journal Article