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Functional energy accumulation, photo- And magnetosensitive hybridity in the GaSe-based hierarchical structures

  • Piotr Chabecki
  • , Dariusz Całus
  • , Fedir Ivashchyshyn
  • , Anna Pidluzhna
  • , Orest Hryhorchak
  • , Ihor Bordun
  • , Oleksandr Makarchuk
  • , Andriy V. Kityk*
  • *Corresponding author for this work
  • Częstochowa University of Technology
  • Lviv Polytechnic National University
  • Ivan Franko National University of L'viv

Research output: Contribution to journalArticlepeer-review

14 Citations (Scopus)

Abstract

We report on the complex GaSe-based hierarchical structures GaSe(CS(NH2)2), GaSe(SmCl3) and GaSe(CS(NH2)2(SmCl3)) synthesized by an intercalation method. The conductive properties of synthesized clathrates and their relation to hierarchical structural complexity were explored by an impedance spectroscopy technique. The impedance response, thermostimulated discharge spectra, and photo- and magnetoresistive effects are reported. Based on the obtained results, the impurity energy spectra were calculated. A strong low-frequency inductive response, observable in the GaSe(SmCl3) clathrate, makes this material promising for the development of gyrator-free nanodelay lines potentially applicable in nanoelectronics. Hierarchical GaSe(CS(NH2)2(SmCl3)) clathrate, on the other hand, reveals hysteresis of the current–voltage characteristics, apparently confirming an accumulation of electric energy at interphase boundaries. A relevant spin battery effect, observable experimentally in stationary magnetic fields, demonstrates a principal possibility of the electric energy accumulation at a quantum level.

Original languageEnglish
Article number4321
JournalEnergies
Volume13
Issue number17
DOIs
Publication statusPublished - Sept 2020
Externally publishedYes

Keywords

  • Hierarchical architecture
  • Impedance spectroscopy
  • Magnetoresistivity
  • Photoresistivity
  • Spin battery effect
  • Supramolecular ensemble

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