Updated on 2024/12/21

写真a

 
INUTSUKA, Manabu
 
Affiliation
Affiliated organization, Waseda Center for a Carbon Neutral Society
Job title
Associate Professor(tenure-track)
Degree
博士(科学) ( 東京大学 )
修士(科学) ( 東京大学 )

Research Experience

  • 2023.09
    -
    Now

    Waseda University   Waseda Center for a Carbon Neutral Society   Associate Professor (JX Nippon Mining Corporation Endowed Chair)

  • 2021.04
    -
    2023.09

    National Institute of Advanced Industrial Science and Technology   Research Instutite for Sustainable Chemistry   Researcher

  • 2018.04
    -
    2021.03

    Kanagawa University   Assistant Professor

  • 2014.04
    -
    2018.03

    Assistant Professor

Education Background

  • 2011.03
    -
    2014.03

    The University of Tokyo  

  • 2009.04
    -
    2011.03

    The University of Tokyo  

  • 2007.04
    -
    2007.09

    The University of Tokyo   Faculty of Engineering  

  • 2005.04
    -
    2007.03

    The University of Tokyo   Faculty of Liberal Arts  

Professional Memberships

  •  
     
     

    公益社団法人高分子学会

  •  
     
     

    一般社団法人日本接着学会

  •  
     
     

    一般社団法人日本ゴム協会

  •  
     
     

    一般社団法人繊維学会

  •  
     
     

    The Japanese Society for Neutron Science

Research Areas

  • Polymer chemistry / Composite materials and interfaces / Polymer materials / Fundamental physical chemistry

Research Interests

  • interfacial science

  • polymer physics

  • 界面化学

  • 高分子物理

Awards

  • 日本ゴム協会2016年年次大会 若手優秀発表賞

    2016.05   日本ゴム協会  

  • 第27回エラストマー討論会 若手優秀発表賞

    2015.12   日本ゴム協会  

  • 日本ゴム協会2015年年次大会 若手優秀発表賞

    2015.05   日本ゴム協会  

 

Papers

  • Absolute local conformation of poly(methyl methacrylate) chains adsorbed on a quartz surface

    Daisuke Kawaguchi, Kazuki Sasahara, Manabu Inutsuka, Tatsuki Abe, Satoru Yamamoto, Keiji Tanaka

    The Journal of Chemical Physics   159 ( 24 )  2023.12  [Refereed]

     View Summary

    Polymer chains at a buried interface with an inorganic solid play a critical role in the performance of polymer nanocomposites and adhesives. Sum frequency generation (SFG) vibrational spectroscopy with a sub-nanometer depth resolution provides valuable information regarding the orientation angle of functional groups at interfaces. However, in the case of conventional SFG, since the signal intensity is proportional to the square of the second-order nonlinear optical susceptibility and thereby loses phase information, it cannot be unambiguously determined whether the functional groups face upward or downward. This problem can be solved by phase-sensitive SFG (ps-SFG). We here applied ps-SFG to poly(methyl methacrylate) (PMMA) chains in direct contact with a quartz surface, shedding light on the local conformation of chains adsorbed onto the solid surface. The measurements made it possible to determine the absolute orientation of the ester methyl groups of PMMA, which were oriented toward the quartz interface. Combining ps-SFG with all-atomistic molecular dynamics simulation, the distribution of the local conformation and the driving force are also discussed.

    DOI

    Scopus

    7
    Citation
    (Scopus)
  • Melt-induced transition in thickness and interfacial molecular orientation of poly(ethylene oxide) thin films

    Manabu Inutsuka, Hirohmi Watanabe, Masaru Aoyagi, Yusuke Maruyama, Taiki Satou, Takayuki Ikehara

    Polymer   287   126416 - 126416  2023.11  [Refereed]

    DOI

    Scopus

    1
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    (Scopus)
  • Regime transition temperature of poly(ethylene oxide) in thin films: Effect of film thickness and molecular weight

    Taiki Satou, Manabu Inutsuka, Toshiyuki Kataoka, Shuta Hara, Takayuki Ikehara

    Polymer   279   125950 - 125950  2023.06  [Refereed]

    DOI

    Scopus

    1
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    (Scopus)
  • Electrical properties of adhesives designed for smart debonding by a pulsed discharge method

    Manabu Inutsuka, Masataka Kondo, Taketoshi Koita, Soowon Lim, Keisuke Ota, Tomoki Honda, Ryo Ogawa, Takao Namihira, Chiharu Tokoro

    The Journal of Adhesion     1 - 15  2023.01  [Refereed]

    DOI

    Scopus

    5
    Citation
    (Scopus)
  • 和周波発生分光法を用いた固体界面における高分子の解析

    Manabu INUTSUKA

    Oleoscience   23 ( 4 ) 215 - 219  2023

    DOI

  • Effect of Oligomer Segregation on the Aggregation State and Strength at the Polystyrene/Substrate Interface

    Manabu Inutsuka, Hirohmi Watanabe, Masaru Aoyagi, Norifumi L. Yamada, Chisa Tanaka, Takayuki Ikehara, Daisuke Kawaguchi, Satoru Yamamoto, Keiji Tanaka

    ACS Macro Letters   11 ( 4 ) 504 - 509  2022.04  [Refereed]

    DOI

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    8
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  • Application of Simple Notch to Selective Separation of Adherend Bonded With Resin Adhesive by Pulsed Discharge in Air

    Taketoshi Koita, Masataka Kondo, Soowon Lim, Manabu Inutsuka, Takao Namihira, Satoshi Oyama, Chiharu Tokoro

    IEEE Transactions on Plasma Science   49 ( 12 ) 3860 - 3872  2021.12  [Refereed]

    DOI

  • A Facile Surface Functionalization Method for Polymers Using a Nonsolvent

    Toyoaki Hirata, Hidenobu Taneda, Kazuya Nishio, Manabu Inutsuka, Norifumi L. Yamada, Fumiya Nemoto, Yasuhisa Minagawa, Hisao Matsuno, Keiji Tanaka

    ACS Applied Bio Materials    2020.03  [Refereed]

    DOI

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    3
    Citation
    (Scopus)
  • A Dynamic Interface Based on Segregation of an Amphiphilic Hyperbranched Polymer Containing Fluoroalkyl and Oligo(ethylene oxide) Moieties

    Yukari Oda, Manabu Inutsuka, Ryo Awane, Masayasu Totani, Norifumi L. Yamada, Masayuki Haraguchi, Masaaki Ozawa, Hisao Matsuno, Keiji Tanaka

    Macromolecules    2020  [Refereed]

     View Summary

    Copyright © 2020 American Chemical Society. An amphiphilic hyperbranched polymer (HBP) containing both fluoroalkyl (Rf: -C6F13) pendants and oligo(ethylene oxide) (nEO) parts was synthesized as a novel type of interfacial modifier to confer dynamic features on conventional polymer films. The HBP was always segregated at the outermost region of the polymer matrix in contact with air and water phases. The former and latter were driven by the presence of hydrophobic Rf pendants and hydrophilic nEO parts, respectively. Such a dynamic interface can be attained by changing the local conformation of HBP or segment-level segregation in the HBP molecule. In water, nEO parts formed a dissolved layer at the interface and induced excellent bioinert properties. Our strategy based on stable segregation, which could be maintained even after changing the environment, should be useful for constructing functional surfaces. ©

    DOI

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    7
    Citation
    (Scopus)
  • The effect of interfacial dynamics on the bulk mechanical properties of rubber composites

    S. Sugimoto, M. Inutsuka, D. Kawaguchi, K. Tanaka

    Polymer Journal    2019.08  [Refereed]

  • Dynamics Gradient of Polymer Chains near a Solid Interface

    H. K. Nguyen, S. Sugimoto, A. Konomi, M. Inutsuka, D. Kawaguchi, K. Tanaka

    ACS Macro Letters   8 ( 8 ) 1006 - 1011  2019.07  [Refereed]

  • Chiral Nucleating Agents Affecting the Handedness of Lamellar Twist in the Banded Spherulites in Poly(ε-Caprolactone)/Poly(Vinyl Butyral) Blends

    T. Ikehara, T. Kataoka, M. Inutsuka, R-H. Jin

    ACS Macro Letters   8 ( 7 ) 871 - 874  2019.06  [Refereed]

  • Adhesion Control of Elastomer Sheet on the Basis of Interfacial Segregation of Hyperbranched Polymer

    Manabu Inutsuka, Masayuki Haraguchi, Masaaki Ozawa, Norifumi L. Yamada, Keiji Tanaka

    ACS Macro Letters   8 ( 3 ) 267 - 271  2019.02  [Refereed]

    DOI

    Scopus

    25
    Citation
    (Scopus)
  • Aggregation States of Poly(4-methylpentene-1) at a Solid Interface

    Kentaro Yamamoto, Daisuke Kawaguchi, Kazuki Sasahara, Manabu Inutsuka, Satoru Yamamoto, Kiminori Uchida, Kazuki Mita, Hiroki Ogawa, Mikihito Takenaka, Keiji Tanaka

    Polymer Journal   51 ( 2 ) 247 - 255  2018.11  [Refereed]

    DOI

    Scopus

    14
    Citation
    (Scopus)
  • Direct Observation of Conformational Relaxation of Polymer Chains at Surfaces

    Hung K. Nguyen, Manabu Inutsuka, Daisuke Kawaguchi, Keiji Tanaka

    ACS Macro Letters   7 ( 10 ) 1198 - 1202  2018.09  [Refereed]

    DOI

    Scopus

    25
    Citation
    (Scopus)
  • Conformational Relaxation of Poly(styrene- co -butadiene) Chains at Substrate Interface in Spin-Coated and Solvent-Cast Films

    Biao Zuo, Manabu Inutsuka, Daisuke Kawaguchi, Xinping Wang, Keiji Tanaka

    Macromolecules   51 ( 6 ) 2180 - 2186  2018.03  [Refereed]

     View Summary

    The local conformation of poly(styrene-co-butadiene) rubber (SBR) chains in direct contact with a quartz substrate was examined by interface-sensitive sum-frequency generation (SFG) spectroscopy. SFG signals, which could be obtained from functional groups only oriented at the interface, were clearly observed for SBR in a film at room temperature which was much higher than the bulk glass transition temperature (Tg). When the film was thermally annealed, SBR chains at the quartz interface changed their conformation to one with a lower energy state, accompanied by the randomization of both the main and side chain parts. The characteristic temperature, at which interfacial chains started to lose their orientations, was much higher than the bulk Tg. Also, the extent found to be more remarkable for the spin-coated film than for the solvent-cast one. This implies that the stress accumulated at the interface, which resulted from the centrifugal force during the spin-coating process, accelerates the mobility of chains there. Finally, the kinetics experiment well supports the slower orientation relaxation at the interface.

    DOI

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    50
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    (Scopus)
  • Rotational Dynamics of a Probe in Rubbery Polymers Characterized by Time-Resolved Fluorescence Anisotropy Measurement

    Hung K. Nguyen, Asuka Konomi, Shin Sugimoto, Manabu Inutsuka, Daisuke Kawaguchi, Keiji Tanaka

    Macromolecular Chemistry and Physics   219 ( 3 ) 1700329-1 - 1700329-7  2018.02  [Refereed]

     View Summary

    The rotational relaxation time (τrot) of a fluorescent molecule, coumarin 153 (C153), dispersed in different rubbery polymers is characterized by time-resolved fluorescence anisotropy measurement, and an attempt is made to quantitatively combine it with the segmental relaxation time (τseg) of the corresponding matrix polymer obtained by dielectric relaxation spectroscopy. This study here demonstrates that τseg extrapolated to higher temperatures using the Vogel–Fulcher–Tammann law can be superimposed on τrot, resulting in a single curve. This behavior is common for polymers with different glass transition temperatures such as polyisoprene and acrylonitrile/butadiene copolymer, implying that the rotational dynamics of C153 is a useful tool for the characterization of polymer dynamics.

    DOI

    Scopus

    5
    Citation
    (Scopus)
  • Reorientation Kinetics of Local Conformation of Polyisoprene at Substrate Interface

    Shin Sugimoto, Manabu Inutsuka, Daisuke Kawaguchi, Keiji Tanaka

    ACS Macro Letters   7 ( 1 ) 85 - 89  2018.01  [Refereed]

     View Summary

    The performance of a polymer composite material, in which inorganic fillers are dispersed, is closely related to the aggregation states and dynamics of polymer chains at the interface with the filler. In this study, the local conformation of polyisoprene (PI) at a quartz substrate interface was studied as a model system for the rubber/filler composite material. PI films were prepared from a toluene solution onto quartz substrates by a spin-coating method. Sum-frequency generation spectroscopy revealed that the local conformation of PI chains at the quartz interface depended on the spinning rate. The tilt angle of methyl groups increased with the rotational speed, probably due to the centrifugal force applied to chains and probably also the evaporation rate of the solvent during the solidification process. This result indicates that the interfacial orientation of PI chains can remain even at room temperature, which is 87 K higher than the bulk glass transition temperature (Tg b). The interfacial orientation disappeared at a temperature approximately 120 K higher than Tg b.

    DOI

    Scopus

    46
    Citation
    (Scopus)
  • Kinetics of Dynamic Polymer Brush Formation

    Hirokazu Tanoue, Manabu Inutsuka, Norifumi L. Yamada, Kohzo Ito, Hideaki Yokoyama

    MACROMOLECULES   50 ( 14 ) 5549 - 5555  2017.07  [Refereed]

     View Summary

    The kinetics of dynamic polymer brush formation, which is driven by interfacial segregation of amphiphilic block copolymers, was investigated by quartz crystal micro-balance (QCM) and neutron reflectivity (NR). High speed formation kinetics in the early stage was probed by QCM, and the later stage, where the formation kinetics became relatively slow, was investigated by NR. QCM detected fairly the fast brush formation kinetics on the order of tens of seconds for the copolymers in use. The dynamic polymer brush rapidly grows initially and hence repairs itself when the surface is damaged and the brush is partly lost. This fast dynamic polymer brush formation is driven by relatively slow diffusion of block copolymers in the matrix. The slow diffusion suggests that the diffusion mechanism is not controlled by simple Rouse or reputational diffusion but by the activation hopping mechanism of self-assembled diblock copolymers.

    DOI

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    13
    Citation
    (Scopus)
  • 固体界面におけるモデルゴムの膨潤不均一性

    犬束学

    繊維学会誌   73 ( 5 ) 192 - 192  2017.05

  • Depth-resolved local conformation and thermal relaxation of polystyrene near substrate interface

    Hung Kim Nguyen, Manabu Inutsuka, Daisuke Kawaguchi, Keiji Tanaka

    JOURNAL OF CHEMICAL PHYSICS   146 ( 20 ) 203313  2017.05  [Refereed]

     View Summary

    By means of sum-frequency generation spectroscopy, we report a depth-resolved measurement of the local conformation and chain relaxation of polystyrene (hPS) located at different distances from the quartz interface. To control the distance from the quartz interface, deuterated polystyrene (dPS) layers with thicknesses of 3.4, 7.5, and 20 nm were coated on the quartz substrates. The hPS chains in direct contact with the substrate surface predominantly orient their phenyl rings in a direction normal to the substrate. This conformation was found to be barely relaxed when the film was annealed for 24 h at 423 K, higher than the bulk glass transition temperature. In contrast, for the hPS chains supported on the dPS layer, the orientation of phenyl rings of hPS became weaker with the annealing and this trend was more significant with increasing distance from the quartz substrate. In particular, the orientation of phenyl rings of hPS after annealing vanished at a distance of 20 nm. These results might provide an important evidence of the difference in the relaxation dynamics of the PS chains located at different distances from the quartz interface. Published by AIP Publishing.

    DOI

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    24
    Citation
    (Scopus)
  • 中性子反射率法に基づく高分子・ソフトマターの界面構造解析

    犬束学, 田中敬二

    日本加速器学会誌 加速器   13 ( 4 ) 202 - 207  2017.01

  • Dynamics of a bioinert polymer in hydrated states by dielectric relaxation spectroscopy

    Toyoaki Hirata, Hisao Matsuno, Daisuke Kawaguchi, Manabu Inutsuka, Tomoyasu Hirai, Masaru Tanaka, Keiji Tanaka

    PHYSICAL CHEMISTRY CHEMICAL PHYSICS   19 ( 2 ) 1389 - 1394  2017.01  [Refereed]

     View Summary

    The chain dynamics of well-defined poly(2-methoxyethyl acrylate) (PMEA), which has been used in practice as a bioinert coating for heart-lung machines, was examined as a function of water content by dielectric relaxation spectroscopy (DRS). Two relaxation processes observed in both dried and hydrated films were assigned to the segmental motion (alpha-process) and the relatively smaller scale motion such as the hindered rotation of side chains (beta-process). Water molecules adsorbed on PMEA made the alpha-process faster, meaning that water molecules in PMEA played the role of a plasticizer. Combining the above knowledge with the depth dependence of water content in the PMEA film previously obtained by neutron reflectivity, the segmental dynamics of PMEA at the water interface, which should be crucial to bio-inertness, is discussed. We found that the segmental motion was markedly faster than that in the bulk and almost comparable to the side chain motion.

    DOI

    Scopus

    21
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  • Dynamic contact angle on a reconstructive polymer surface by segregation

    Manabu Inutsuka, Hirokazu Tanoue, Norifumi L. Yamada, Kohzo Ito, Hideaki Yokoyama

    RSC ADVANCES   7 ( 28 ) 17202 - 17207  2017  [Refereed]

     View Summary

    We report the peculiar time evolution of the contact angle of water on reconstructive polymer surface. Surface reconstruction is driven by segregation of amphiphilic diblock copolymer to the water interface of the elastomer, in which amphiphilic diblock copolymer is mixed. In other words, the brush of hydrophilic block is spontaneously formed at the elastomer/water interface and can be called dynamic polymer brush. The contact angle measurement of water droplet was carried out as a function of time after a droplet was placed on the surface. The contact angles stay the same value for certain induction period before decrease monotonically with time. We also proposed a simple model to explain the experimental results quantitatively. The model is based on two hypotheses: water droplet starts to spread only after a depletion layer of the hydrophilic block at the air interface is dissolved, and segregated block copolymer brush begins to repel one another.

    DOI

  • Synthesis and surface characterization of well-defined amphiphilic block copolymers composed of polydimethylsiloxane and poly[oligo(ethylene glycol) methacrylate]

    Raita Goseki, Ling Hong, Manabu Inutsuka, Hideaki Yokoyama, Kohzo Itob, Takashi Ishizone

    RSC ADVANCES   7 ( 41 ) 25199 - 25207  2017  [Refereed]

     View Summary

    series of amphiphilic polydimethylsiloxane-b-poly[tri(ethylene glycol) methyl ether methacrylate] (PDMS-b-PM3) diblock copolymers were prepared with varying PM3 compositions. The well-defined PDMS-b-PM3 was synthesized by using a coupling reaction between the living PM3 and omega-benzyl bromide-functionalized PDMS. The obtained polymers had narrow molecular weight distributions (M-w/M-n <= 1.08) and predictable molecular weights. The bulk-state self-assembly of the polymers was studied by transmission electron microscopy (TEM) and small-angle X-ray scattering (SAXS) measurements. The microphase separated morphologies in these amphiphilic block copolymers varied from the PDMS-cylinder to lamellar, even if the molecular fraction of the PM3 was progressively reduced from 70 wt% to 17 wt%. We also performed the detailed surface structural characterization of the amphiphilic PDMS-b-PM3 thin-films by X-ray photoelectron spectroscopy (XPS), scanning electron microscopy (SEM), atomic force microscopy (AFM), and static water contact angle measurement. Based on these structural analyses, we proposed that the block copolymer self-assembled into a cylinder-like nanostructure at the top of thin film surface without any tedious annealing method in the case of the block copolymer possessing high PM3 content (>= 70 wt%).

    DOI

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    9
    Citation
    (Scopus)
  • Unswollen layer of cross-linked polyisoprene at the solid interface

    Shinichiro Shimomura, Manabu Inutsuka, Norifumi L. Yamada, Keiji Tanaka

    POLYMER   105 ( 22 ) 526 - 531  2016.11  [Refereed]

     View Summary

    The density profile in a thin cross-linked polyisoprene (PI) film spin-coated on a quartz substrate in n-hexane was examined by specular neutron reflectivity. We found two layers with different PI densities at the substrate interface. The characteristics of the layers are discussed in terms of bound rubber typically associated with the field of rubber materials and adsorbed layers typically associated with the field of glassy materials. (C) 2016 Elsevier Ltd. All rights reserved.

    DOI

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    21
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  • Stabilization of polystyrene thin films by introduction of a functional end group

    Shinichiro Shimomura, Manabu Inutsuka, Koichiro Tajima, Masaaki Nabika, Satoru Moritomi, Hisao Matsuno, Keiji Tanaka

    POLYMER JOURNAL   48 ( 9 ) 949 - 953  2016.09  [Refereed]

     View Summary

    The thin film stabilities of omega-N-(3-(dimethylamino) propyl)propylamide-terminated polystyrene (PS-N) and its blends with conventional polystyrene (PS-H) supported on silicon wafers with a native oxide layer were examined. Whereas a 20-nm-thick film of PS-H with a number-average molecular weight of similar to 50k decomposed at 423 K, a comparable PS-N film and blended films containing a PS-N fraction of 440 wt% were stable. Although the local conformation of chains at the substrate interface was not the same for PS with and without the functional end group, the glass transition temperature at the interface was identical for both PS-H and PS-N. The residual adsorbed layer on the substrate after washing the films with a good solvent was thicker for PS-N than for PS-H. This implies that end functionalization, rather than segmental dynamics, affects chain movement on a large scale.

    DOI

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    21
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  • Nanoscale Characterization of Epoxy Interface on Silica

    Kenji Okamoto, Tatsuya Ganbe, Nobuyuki Sekine, Mika Aoki, Manabu Inutsuka, Atsuomi Shundo, Daisuke Kawaguchi, Keiji Tanaka

    2016 IEEE INTERNATIONAL CONFERENCE ON DIELECTRICS (ICD), VOLS 1-2     84 - 87  2016  [Refereed]

     View Summary

    The objective of this study is to carry out nanoscale characterization of the epoxy resin interface on silica by determining the glass-transition temperature (T-g) and molecular conformation at the interface by means of a novel nondestructive method. The T-g was determined by fluorescence lifetime measurements using evanescent wave excitation. It was revealed that the T-g of epoxy resin at a distance of 30 nm from the interface was 10 K higher than that at a distance of 80 nm. The chemical composition and molecular conformation were analysed by X-ray photoelectron spectroscopy and sum-frequency generation (SFG) spectroscopy, respectively. The SFG data revealed that unreacted epoxy group remained at the interface. The T-g of epoxy resin increased in the regions near the interface, and the epoxy group remained unreacted at a distance of ca. 10 nm or less from the interface.

  • Aggregation States of Polymers at Hydrophobic and Hydrophilic Solid Interfaces

    Manabu Inutsuka, Ayanobu Horinouchi, Keiji Tanaka

    ACS MACRO LETTERS   4 ( 10 ) 1174 - 1178  2015.10  [Refereed]

     View Summary

    Aggregation states of polystyrene (PS) and poly(methyl methacrylate) (PMMA) at hydrophobic deuterate-doctadecyltrichlorosilane (OTS-d) and hydrophilic SiOx interfaces are discussed, focusing on the interaction strength between polymer and substrate. Sum-frequency generation spectroscopy revealed that PS exhibited oriented phenyl groups along the normal direction at the interface in a spin-coated film because of the centrifugal force generated during the film solidification process, whereas it did not in a solvent-cast film. This result was common for both hydrophobic and hydrophilic substrates. That is, the aggregation states of PS depended little on which kind of substrate was used. This is because the interaction between PS and the surfaces is weak. In the case of a PMMA film on the hydrophobic OTS-d substrate, the interfacial local conformation was also dependent on the method of film preparation. PMMA at the hydrophilic SiOx interface, however, exhibited oriented ester methyl groups along the direction normal to the interface, regardless of the film preparation method. This is due to a stronger interaction via hydrogen bonding between carbonyl groups of PMMA and the substrate surface.

    DOI

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    52
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  • Highly dielectric and flexible polyrotaxane elastomer by introduction of cyano groups

    Manabu Inutsuka, Katsunari Inoue, Yuki Hayashi, Aoi Inomata, Yasuhiro Sakai, Hideaki Yokoyama, Kohzo Ito

    POLYMER   59   10 - 15  2015.02  [Refereed]

     View Summary

    A series of highly dielectric polyrotaxane derivatives consisting of axle polyethylene glycol (PEG) and threated alpha-cyclodextrins (CDs) were synthesized by Modifying the hydroxyl groups of CDs with cyanoethyl or dicyanobutyl groups. We found that the introduction of poly(2-hydroxyethyl methacrylate) (PHEMA) side chain with a number of hydroxyl groups and subsequent cyanoethylation give particularly high dielectric constant (23.4), which is comparable to those of commercially available highly dielectric polymeric materials. We also succeeded in preparing a highly dielectric (epsilon' similar to 16 at 10 kHz) and flexible (Young's modulus similar to 3.4 MPa) elastomer film without any inorganic filler, which is a desirable material for insulator of dielectric elastomer actuators. (C) 2014 Elsevier Ltd. All rights reserved.

    DOI

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  • High Density Polymer Brush Spontaneously Formed by the Segregation of Amphiphilic Diblock Copolymers to the Polymer/Water Interface

    Manabu Inutsuka, Norifumi L. Yamada, Kohzo Ito, Hideaki Yokoyama

    ACS MACRO LETTERS   2 ( 3 ) 265 - 268  2013.03  [Refereed]

     View Summary

    A self-repairable high density polymer brush of poly(ethylene glycol) (PEG) is formed at the interface between cross-linked poly(dimethyl siloxane) (PDMS) and water by spontaneous surface segregation of an amphiphilic diblock copolymer consisting of PEG and PDMS. The surface reconstruction by the formation of the brush was observed as the large hysteresis of the contact angle of the water droplet. Neutron reflectivity measurement revealed that the grafting density of the polymer brush is 2.8 chain/nm(2), which is comparable to those of polymer brushes by the surface-initiated polymerization method. The formation of such a remarkably dense polymer brush by segregation can be well supported by the balance between the mixing enthalpy of PEG and water and the stretching energy of PEG.

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Books and Other Publications

  • 構造制御による革新的ソフトマテリアル創成

    犬束学, 田中敬二( Part: Joint author, 11章 薄膜の表面・界面解析手法)

    化学同人  2018.05

  • 産業応用を目指した無機・有機新材料創製のための構造解析技術

    犬束学, 田中敬二( Part: Joint author, 第1章 X線回折、4 中性子反射率による構造解析)

    シーエムシー出版  2015.08

Presentations

  • 結晶性高分子薄膜の融解挙動と界面状態

    犬束学, 丸山祐亮, 池原飛之

    第69回高分子討論会  (福井)  公益社団法人 高分子学会

    Presentation date: 2019.09

  • 結晶性高分子薄膜の融解挙動

    犬束学, 丸山祐亮, 池原飛之

    第68回高分子学会年次大会  (大阪)  公益社団法人 高分子学会

    Presentation date: 2019.05

  • Control of Polymer Adhesion Based on Chain Architecture

    Manabu Inutsuka, Masayuki Haraguchi, Masaaki, Ozawa, Norifumi. L. Yamada, Keiji Tanaka

    第67回高分子学会年次大会  (名古屋)  公益社団法人 高分子学会

    Presentation date: 2018.05

  • Peculiar Aggregation States of a Rubbery Polymer at Solid Interfaces

    Manabu Inutsuka, Shin Sugimoto, Shinichiro Shimomura, Norifumi. L. Yamada, Daisuke Kawaguchi, Keiji Tanaka  [Invited]

    2017 Kyushu-Seibu/Pusan-Gyeongnam Joint Symposium on High Polymers(18th) and Fibers(16th) 

    Presentation date: 2017.12

  • Interface-induced peculiar aggregation states of polyisoprene with inorganic material

    Manabu Inutsuka, Shinichiro Shimomura, Norifumi L. Yamada, Keiji Tanaka

    The International Rubber Conference 2016 

    Presentation date: 2017.10

  • Controlled Adhesion of Rubber with Hyperbranched Polymers

    Manabu Inutsuka, Ryo Awane, Masayuki Haraguchi, Masaaki Ozawa, Norifumi L. Yamada, Keiji Tanaka  [Invited]

    XXVI International Materials Research Congress 

    Presentation date: 2017.08

  • 多分岐高分子の界面濃縮に基づく高分子の粘着制御

    犬束 学, 原口将幸, 小澤雅昭, 田中敬二

    平成29年度 九州地区高分子若手研究会・夏の講演会 

    Presentation date: 2017.06

  • 多分岐高分子を用いた高分子の粘着制御

    犬束 学, 粟根 諒, 織田ゆか里, 原口将幸, 小澤雅昭, 田中敬二

    日本ゴム協会2017年年次大会 

    Presentation date: 2017.05

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Research Projects

  • Nanoscale hierarchical structure at polymer adhesion interface

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research

    Project Year :

    2022.04
    -
    2025.03
     

  • Lamellar crystals and the behavior of molecular chains in the monolayers of crystalline polymers grafted onto solid substrates

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research

    Project Year :

    2019.04
    -
    2023.03
     

  • Time-space Distribution of Residual Stresses in Polymeric Adhesives

    Japan Society for the Promotion of Science  Grants-in-Aid for Scientific Research

    Project Year :

    2015.04
    -
    2017.03
     

    Tanaka Keiji

     View Summary

    The epoxy resin, which is a thermosetting material with a three-dimensional network structure, has been widely used as adhesives, paints, etc. Little information on a relatively large-scale heterogeneity induced in the epoxy resin upon the polymerization and cross-linking reactions is available for a moment. The objective of this research is to give a better understanding and control of hierarchical heterogeneity in the epoxy resin on the basis of a particle tracking method.

  • 固体界面へのゴムの粘着現象と分子鎖凝集状態

    公益財団法人江野科学振興財団 

    Project Year :

    2016.04
    -
    2017.03
     

  • Cross-link structure and chain dynamics of polymer networks at solid interfaces

    Project Year :

    2015.04
    -
    2017.03
     

 

Syllabus

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Sub-affiliation

  • Affiliated organization   Global Education Center

  • Faculty of Science and Engineering   Graduate School of Creative Science and Engineering

  • Faculty of Science and Engineering   School of Creative Science and Engineering