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Exploring Nanoscale Structure in Perovskite Precursor Solutions Using Neutron and Light Scattering.
O'Kane, Mary E; Smith, Joel A; Kilbride, Rachel C; Spooner, Emma L K; Duif, Chris P; Catley, Thomas E; Washington, Adam L; King, Stephen M; Parnell, Steven R; Parnell, Andrew J.
Afiliação
  • O'Kane ME; Department of Physics and Astronomy, University of Sheffield, The Hicks Building, Sheffield S3 7RH, United Kingdom.
  • Smith JA; Department of Physics and Astronomy, University of Sheffield, The Hicks Building, Sheffield S3 7RH, United Kingdom.
  • Kilbride RC; Department of Physics and Astronomy, University of Sheffield, The Hicks Building, Sheffield S3 7RH, United Kingdom.
  • Spooner ELK; Department of Physics and Astronomy, University of Sheffield, The Hicks Building, Sheffield S3 7RH, United Kingdom.
  • Duif CP; Faculty of Applied Sciences, Delft University of Technology, Mekelweg 15, 2629 JB Delft, The Netherlands.
  • Catley TE; Department of Physics and Astronomy, University of Sheffield, The Hicks Building, Sheffield S3 7RH, United Kingdom.
  • Washington AL; ISIS Pulsed Neutron and Muon Source, STFC Rutherford Appleton Laboratory, Harwell Campus, Didcot OX11 0QX, United Kingdom.
  • King SM; ISIS Pulsed Neutron and Muon Source, STFC Rutherford Appleton Laboratory, Harwell Campus, Didcot OX11 0QX, United Kingdom.
  • Parnell SR; Faculty of Applied Sciences, Delft University of Technology, Mekelweg 15, 2629 JB Delft, The Netherlands.
  • Parnell AJ; Department of Physics and Astronomy, University of Sheffield, The Hicks Building, Sheffield S3 7RH, United Kingdom.
Chem Mater ; 34(16): 7232-7241, 2022 Aug 23.
Article em En | MEDLINE | ID: mdl-36032552
ABSTRACT
Tailoring the solution chemistry of metal halide perovskites requires a detailed understanding of precursor aggregation and coordination. In this work, we use various scattering techniques, including dynamic light scattering (DLS), small angle neutron scattering (SANS), and spin-echo SANS (SESANS) to probe the nanostructures from 1 nm to 10 µm within two different lead-halide perovskite solution inks (MAPbI3 and a triple-cation mixed-halide perovskite). We find that DLS can misrepresent the size distribution of the colloidal dispersion and use SANS/SESANS to confirm that these perovskite solutions are mostly comprised of 1-2 nm-sized particles. We further conclude that if there are larger colloids present, their concentration must be <0.005% of the total dispersion volume. With SANS, we apply a simple fitting model for two component microemulsions (Teubner-Strey), demonstrating this as a potential method to investigate the structure, chemical composition, and colloidal stability of perovskite solutions, and we here show that MAPbI3 solutions age more drastically than triple cation solutions.

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2022 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2022 Tipo de documento: Article