Skip to main content
Home
Department Of Physics text logo
  • Research
    • Our research
    • Our research groups
    • Our research in action
    • Research funding support
    • Summer internships for undergraduates
  • Study
    • Undergraduates
    • Postgraduates
  • Engage
    • For young people
    • For teachers
    • For the public
    • For alumni
    • For business
  • Support
Menu
Calculated exciton wave function in a hybrid organic-inorganic layered halide perovskite
Credit: Figure created with VESTA; calculations performed with the BerkeleyGW code

Marina Filip

Professor of Physics

Research theme

  • Photovoltaics and nanoscience

Sub department

  • Condensed Matter Physics

Research groups

  • Computational Condensed Matter Physics Group
marina.filip@physics.ox.ac.uk
Clarendon Laboratory, room 109
  • About
  • Publications

GW quasiparticle band structures of stibnite, antimonselite, bismuthinite, and guanajuatite

Physical Review B - Condensed Matter and Materials Physics 87:20 (2013)

Authors:

MR Filip, CE Patrick, F Giustino

Abstract:

We present first-principles calculations of the quasiparticle band structures of four isostructural semiconducting metal chalcogenides A 2B3 (with A = Sb, Bi and B = S, Se) of the stibnite family within the G0W0 approach. We perform extensive convergence tests and identify a sensitivity of the quasiparticle corrections to the structural parameters and to the semicore d electrons. Our calculations indicate that all four chalcogenides exhibit direct band gaps, if we exclude some indirect transitions marginally below the direct gap. Relativistic spin-orbit effects are evaluated for the Kohn-Sham band structures, and included as scissor corrections in the quasiparticle band gaps. Our calculated band gaps are 1.5 eV (Sb2S3), 1.3 eV (Sb2Se 3), 1.4 eV (Bi2S3), and 0.9 eV (Bi 2Se3). By comparing our calculated gaps with the ideal Shockley-Queisser value we find that all four chalcogenides are promising as light sensitizers for nanostructured photovoltaics. © 2013 American Physical Society.
More details from the publisher
More details
Details from ArXiV

GW quasiparticle band structures of stibnite, antimonselite, bismuthinite, and guanajuatite

(2013)

Authors:

Marina R Filip, Christopher E Patrick, Feliciano Giustino
More details from the publisher

Electronic and field emission properties of two-dimensional nanotori

Journal of Vacuum Science & Technology B Nanotechnology and Microelectronics Materials Processing Measurement and Phenomena American Vacuum Society 29:2 (2011) 02b105

Authors:

Marina Rucsandra Filip, Lucian Dragoş Filip
More details from the publisher

P2-20: Electronic and Field-Emission Properties of Two-Dimensional Nano-Tori

Institute of Electrical and Electronics Engineers (IEEE) 1 (2010) 161-162

Authors:

Marina Rucsandra Filip, Lucian Dragoş Filip
More details from the publisher

Quantum limits to the electron field emission from tapered conductive sheets

Journal of Vacuum Science & Technology B Nanotechnology and Microelectronics Materials Processing Measurement and Phenomena American Vacuum Society 28:2 (2010) c2a64-c2a71

Authors:

Marina Rucsandra Filip, Ştefan Antohe, Lucian Ion, Masaki Tanemura
More details from the publisher

Pagination

  • First page First
  • Previous page Prev
  • …
  • Page 10
  • Page 11
  • Page 12
  • Page 13
  • Page 14
  • Page 15
  • Page 16
  • Current page 17
  • Page 18
  • Next page Next
  • Last page Last

Footer Menu

  • Contact us
  • Giving to the Dept of Physics
  • Work with us
  • Media

User account menu

  • Log in

Follow us

FIND US

Clarendon Laboratory,

Parks Road,

Oxford,

OX1 3PU

CONTACT US

Tel: +44(0)1865272200

University of Oxfrod logo Department Of Physics text logo
IOP Juno Champion logo Athena Swan Silver Award logo

© University of Oxford - Department of Physics

Cookies | Privacy policy | Accessibility statement

Built by: Versantus

  • Home
  • Research
  • Study
  • Engage
  • Our people
  • News & Comment
  • Events
  • Our facilities & services
  • About us
  • Giving to Physics
  • Current students
  • Staff intranet