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Specific crystal structure of poly(3-hydroxybutyrate) thin films studied by infrared reflection–absorption spectroscopy
Authors:Harumi Sato   Rumi Murakami   Katsuhito Mori   Yuriko Ando   Isao Takahashi   Isao Noda  Yukihiro Ozaki  
Affiliation:aSchool of Science and Technology, Kwansei Gakuin University, Sanda 669-1337, Japan;bResearch Center for Environment Friendly Polymers, Kwansei Gakuin University, Sanda 669-1337, Japan;cAdvanced Research Center on Nanostructures, Surface and Interface, Kwansei Gakuin University, Sanda 669-1337, Japan;dThe Procter & Gamble Company, 8611 Beckett Road, West Chester, OH 45069, United States
Abstract:Infrared reflection–absorption (IR-RAS) and transmission spectra were measured for poly(3-hydroxybutyrate) (PHB) thin films to explore its specific crystal structure in the surface region. As IR-RAS is sensitive to the vibration mode of perpendicular orientation of the surface, differences between IR-RAS and transmission spectra indicate an orientation of the lamella structure in the surface of PHB thin films. The relative intensity of the crystalline Cdouble bond; length as m-dashO stretching band in the IR-RAS spectrum is significantly weaker than that in the transmission spectrum. It may be concluded that the transient dipole moment of the Cdouble bond; length as m-dashO stretching mode of the crystalline state is not oriented perpendicular but nearly parallel to the substrate surface. On the other hand, the relative intensity of the band at 3009 cm−1 due to the C–H stretching mode of the C–Hcdots, three dots, centeredOdouble bond; length as m-dashC hydrogen bonding is similar between the IR-RAS and transmission spectra, suggesting that the C–H bond is oriented neither perpendicular nor parallel to the substrate surface but in an intermediate direction. Since the Cdouble bond; length as m-dashO group of the C–Hcdots, three dots, centeredOdouble bond; length as m-dashC hydrogen bonding is oriented nearly parallel to the surface and its C–H group is in the intermediate direction, it is very likely that the C–Hcdots, three dots, centeredOdouble bond; length as m-dashC hydrogen bonding has a somewhat bent structure. These results are in good agreement with our previous conclusion that the C–Hcdots, three dots, centeredOdouble bond; length as m-dashC hydrogen bonding of PHB exists along the a-axis (not the b-axis) between the CH3 group of one helix and the Cdouble bond; length as m-dashO group of another helix.
Keywords:Infrared reflection–  absorption spectroscopy   Crystal structure   C–  H  http://www.sciencedirect.com/scidirimg/entities/22ef.gif"   alt="  cdots, three dots, centered"   title="  cdots, three dots, centered"   border="  0"  >O  http://www.sciencedirect.com/scidirimg/entities/dbnd"   alt="  double bond   length as m-dash"   title="  double bond   length as m-dash"   border="  0"  >C hydrogen bonding
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