| 代表的研究論文 |
1. M. Masakii, E. Kokufuta: Polyampholyte Gels of a Cross-linked Polyanion or Polycation Network
into Which an Oppositely Charged Polyion Was Immobilized: Their pH-Induced
Swelling/Shrinking Characteristics, Colloid. Polym. Sci. DOI 10.1007/s00396-012-2771-2 (Published online: 04 September 2012).
2. R. Doi, E. Kokufuta: Conductometric and Light Scattering Studies on the Complexation between
Cationic Polyelectrolyte Nanogel and Anionic Polyion, Langmuir, 27 [1], 392-398 (2011).
3. R. Doi, E. Kokufuta: On the Water Dispersibility of a 1:1 Stoichiometric Complex between
a Cationic Nanogel and Linear Polyanion, Langmuir, 26[16], 13579-13589 (2010).
4. M. Kano, E. Kokufuta: On the Temperature-Responsive Polymers and Gels Based on N-Propylacrylamides and N-Propylmethacrylamides, Langmuir, 25[15], 8649-8655 (2009).
5. M. Furukawa, R. S. Farinato E. Kokufuta: Potentiometric Titration Behavior of Poly(acrylic acid) within a Cross-linked Polymer Network Having Amide Groups, Colloid Polym. Sci., 286[12], 1425-1434 (2008).
6. E. Kokufuta, K. Ogawa, R. Doi, R. Kikuchi, R. S. Farinato: Geometrical Characteristics of Polyelectrolyte Nanogel Particles and Their Polyelectrolyte Complexes Studied by Dynamic and Static Light Scattering, J. Phys. Chem. B, 111[29], 8634-8640 (2007).
7. M. Miyake, K. Ogawa, E. Kokufuta: Light Scattering Study of Polyelectrolyte Complex Formation between Anionic
and Cationic Nanogels in an Aqueous Salt-free System, Langmuir, 22[17], 7335-7341 (2006).
8. E. Kokufuta: Polyelectrolyte Gel Transitions: Experimental Aspects of Charge Inhomogeneity
in the Swelling and Segmental Attractions in the Shrinking, Langmuir (Special Issue in Honor of Robert L. Rowell), 21[22], 10004-10015 (2005).
9. Y. Ogawa, K. Ogawa, E. Kokufuta: Swelling-Shrinking Behavior of a Polyampholyte Gel Composed of Positively
Charged Networks with Immobilized Polyanions, Langmuir, 20[7], 2546-2552
(2004).
10. H. Suzuki, A. Kumagai, K. Ogawa, E. Kokufuta: New Type of Glucose Sensor Based on Enzymatic Conversion of Gel Volume
into Liquid Column Length, Biomacromolecules, 5[2], 486-491 (2004).
11. T. Matsudo, K. Ogawa, E. Kokufuta: Complex Formation of Protein with Different Water-soluble Synthetic Polymers, Biomacromolecules, 4[6], 1794-1799 (2003).
12. K. Yabusaki, E. Kokufuta: Aggregation Mechanism of Blood Platelets by Time-Resolved Light Scattering Method, Langmuir, 18[1], 39-45 (2002).
13. K. S. Schmitz, B. Wang, E. Kokufuta: Mechanism of Microgel Formation via Crosslinking of Polymers in Their
Dilute Solutions: Mathematical Explanation with Computer Simulations, Macromolecules, 34[23], 8370-8377 (2001).
14. E. Kokufuta, B. Wang, R. Yoshida, A. R. Khokhlov, M. Hirata: Volume Phase Transition
of Polyelectrolyte Gels with Different Charge Distributions, Macromolecules, 31[20], 6878-6884 (1998).
15. E. Kokufuta, S. Matsukawa, T. Tanaka: Enzymatically Induced Reversible Gel-Sol Transition
of a Synthetic Polymer System, Macromolecules, 28[9], 3474-3475 (1995).
16. E. Kokufuta, Y.-Q. Zhang, T. Tanaka: Saccharide-sensitive Phase Transition of a Lectin-loaded
Gel, Nature, 351[6324], 302-304 (1991).
17. F. Ilmain, T. Tanaka, E. Kokufuta: Volume Transition in a Gel Driven by Hydrogen Bonding, Nature, 349[6308], 400-401 (1991). |
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