CVClient

Shin'ichi Yusa

  (遊佐 真一)

Profile Information

Affiliation
Graduate School of Engineering, University of Hyogo
Degree
博士(理学)(大阪大学)

J-GLOBAL ID
200901059347920447
researchmap Member ID
5000099919

External link

Research History

 1

Committee Memberships

 1

Papers

 296
  • Kaito Yokota, Sari Usuda, Tomoya Nishimura, Rintaro Takahashi, Yusuke Taoka, Shingo Kobayashi, Masaru Tanaka, Kazuaki Matsumura, Shin-Ichi Yusa
    Langmuir, Jan 2, 2025  
  • Thi Ngan Vu, Tomoya Nishimura, Yu Osaki, Toyohiro Otani, Shin-ichi Yusa
    Polymers, Jan, 2025  
  • Tomoki Ando, Thi Ngan Vu, Tomoya Nishimura, Rintaro Takahashi, Shin-ichi Yusa
    Langmuir, Nov 26, 2024  
  • Misato Hayashi, Rintaro Takahashi, Thi Ngan Vu, Kazuaki Matsumura, Shigeru Yamago, Shin-ichi Yusa
    Polymer Journal, Aug 16, 2024  
  • Kaito Yokota, Rintaro Takahashi, Vu Thi Ngan, Tomoya Nishimura, Michael Kappl, Syuji Fujii, Shin‐ichi Yusa
    Macromolecular Rapid Communications, Aug, 2024  
    Abstract A dual zwitterionic diblock copolymer (M100C100) consisting of poly(2‐(methacryloyloxy)ethyl phosphorylcholine) (PMPC, M) and poly(3‐((2‐(methacryloyloxy)ethyl) dimethylammonio) propionate) (PCBMA, C) is synthesized via reversible addition‐fragmentation chain transfer (RAFT) polymerization. A double hydrophilic diblock copolymer (M100S100) consist of PMPC and anionic poly(3‐sulfopropyl methacrylate potassium salt) (PMPS, S) is synthesized via RAFT. The degrees of polymerization of each block are 100. The charges of PMPC are neutralized intramolecularly. At neutral pH, the charges in PCBMA are also neutralized intramolecularly due to its carboxybetaine structure. Under acidic conditions, PCBMA exhibits polycation behavior as the pendant carboxy groups become protonated, forming cationic tertiary amine groups. PMPS shows permanent anionic nature independent of pH. Charge neutralized mixture of cationic M100C100 and anionic M100S100 in acidic aqueous solution forms water‐soluble polyion complex (PIC) micelle owing to electrostatic attractive interactions. The core is composed of the cationic PCBMA and anionic PMPS blocks, with the PMPC blocks serving as shells that covered the core surface, forming spherical core–shell PIC micelles. Above pH 4 the pendant carboxy groups in PCBMA undergo deprotonation, transitioning to a zwitterionic state, thereby eliminating the cationic charge in PCBMA. Therefore, above pH 4 the PIC micelles are dissociated due to the disappearance of the charge interactions.

Misc.

 113

Major Presentations

 72

Major Research Projects

 20