4.7 Article

High-pressure vibrational properties of polyethylene

Journal

JOURNAL OF CHEMICAL PHYSICS
Volume 133, Issue 20, Pages -

Publisher

AMER INST PHYSICS
DOI: 10.1063/1.3507251

Keywords

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Funding

  1. European Union [228334-LASERLAB EUROPE]
  2. Italian Ministero dell'Universita e della Ricerca Scientifica e Tecnologica (MURST)
  3. Ente Cassa di Risparmio di Firenze

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The pressure evolution of the vibrational spectrum of polyethylene was investigated up to 50 GPa along different isotherms by Fourier-transform infrared and Raman spectroscopy and at 0 K by density-functional theory calculations. The infrared data allow for the detection of the orthorhombic Pnam to monoclinic P2(1)/m phase transition which is characterized by a strong hysteresis both on compression and decompression experiments. However, an upper and lower boundary for the transition pressure are identified. An even more pronounced hysteresis is observed for the higher-pressure transition to the monoclinic A2/m phase. The hysteresis does not allow in this case the determination of a well defined P-T transition line. The ambient structural properties of polyethylene are fully recovered after compression/decompression cycles indicating that the polymer is structurally and chemically stable up to 50 GPa. A phase diagram of polyethylene up to 50 GPa and 650 K is proposed. Analysis of the pressure evolution of the Davydov splittings and of the anomalous intensification with pressure of the IR active wagging mode provides insight about the nature of the intermolecular interactions in crystalline polyethylene. (C) 2010 American Institute of Physics. [doi:10.1063/1.3507251]

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