Materials Map

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The Materials Map is an open tool for improving networking and interdisciplinary exchange within materials research. It enables cross-database search for cooperation and network partners and discovering of the research landscape.

The dashboard provides detailed information about the selected scientist, e.g. publications. The dashboard can be filtered and shows the relationship to co-authors in different diagrams. In addition, a link is provided to find contact information.

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University of Minho

in Cooperation with on an Cooperation-Score of 37%

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Publications (1/1 displayed)

  • 2023A Polymorph of Dipeptide Halide Glycyl-L-Alanine Hydroiodide Monohydrate: Crystal Structure, Optical Second Harmonic Generation, Piezoelectricity and Pyroelectricity4citations

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Castro, M. Cidália R.
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Almeida, Bernardo
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Rodrigues, Manuel J. L. F.
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Gomes, Clara
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Gomes, Etelvina De Matos
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Belsley, Michael
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Peixoto Oliveira, João Miguel
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Machado Da Silva, Bruna
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Veiga Rodrigues, Pedro
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Batista, Rosa M. F.
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Machado, Ana
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2023

Co-Authors (by relevance)

  • Castro, M. Cidália R.
  • Almeida, Bernardo
  • Rodrigues, Manuel J. L. F.
  • Gomes, Clara
  • Gomes, Etelvina De Matos
  • Belsley, Michael
  • Peixoto Oliveira, João Miguel
  • Machado Da Silva, Bruna
  • Veiga Rodrigues, Pedro
  • Batista, Rosa M. F.
  • Machado, Ana
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article

A Polymorph of Dipeptide Halide Glycyl-L-Alanine Hydroiodide Monohydrate: Crystal Structure, Optical Second Harmonic Generation, Piezoelectricity and Pyroelectricity

  • Castro, M. Cidália R.
  • Almeida, Bernardo
  • Rodrigues, Manuel J. L. F.
  • Gomes, Clara
  • Gomes, Etelvina De Matos
  • Belsley, Michael
  • Freitas, R. B.
  • Peixoto Oliveira, João Miguel
  • Machado Da Silva, Bruna
  • Veiga Rodrigues, Pedro
  • Batista, Rosa M. F.
  • Machado, Ana
Abstract

<jats:p>A polymorph of glycyl-L-alanine HI.H2O is synthesized from chiral cyclo-glycyl-L-alanine dipeptide. The dipeptide is known to show molecular flexibility in different environments, which leads to polymorphism. The crystal structure of the glycyl-L-alanine HI.H2O polymorph is determined at room temperature and indicates that the space group is polar (P21), with two molecules per unit cell and unit cell parameters a = 7.747 Å, b = 6.435 Å, c = 10.941 Å, α = 90°, β = 107.53(3)°, γ = 90° and V = 520.1(7) Å3. Crystallization in the polar point group 2, with one polar axis parallel to the b axis, allows pyroelectricity and optical second harmonic generation. Thermal melting of the glycyl-L-alanine HI.H2O polymorph starts at 533 K, close to the melting temperature reported for cyclo-glycyl-L-alanine (531 K) and 32 K lower than that reported for linear glycyl-L-alanine dipeptide (563 K), suggesting that although the dipeptide, when crystallized in the polymorphic form, is not anymore in its cyclic form, it keeps a memory of its initial closed chain and therefore shows a thermal memory effect. Here, we report a pyroelectric coefficient as high as 45 µC/m2K occurring at 345 K, one order of magnitude smaller than that of semi-organic ferroelectric triglycine sulphate (TGS) crystal. Moreover, the glycyl-L-alanine HI.H2O polymorph displays a nonlinear optical effective coefficient of 0.14 pm/V, around 14 times smaller than the value from a phase-matched inorganic barium borate (BBO) single crystal. The new polymorph displays an effective piezoelectric coefficient equal to deff=280 pCN−1, when embedded into electrospun polymer fibers, indicating its suitability as an active system for energy harvesting.</jats:p>

Topics
  • impedance spectroscopy
  • polymer
  • single crystal
  • phase
  • thermogravimetry
  • crystallization
  • melting temperature
  • space group
  • Barium