Lokal struktur hos metallhalidperovskiter undersökt med vibrationsspektroskopi
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Examensarbete på kandidatnivå
Bachelor Thesis
Bachelor Thesis
Modellbyggare
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Sammanfattning
Local Structure in Metal Halide Perovskites studied with Vibrational
Spectroscopy
The rapid development of metal halide perovskites has during the last decade positio
ned the material as one of the most promising candidates for future energy technology
such as solar cell technology, light emitting diodes, and photodetectors. Because
metal halide perovskites are very flexible and in combination with the ease of synt
hesizing the material, they are particularly attractive to use for technical applications.
This bachelor’s thesis aims to analyze the local structure of the metal halide perov
skite EAxMA1−xPbI3 and in particular to see how the local structure is affected by
the cation composition x. By analyzing how the chemical composition affects the
structure of the material at room temperature, new knowledge is obtained, which is
of purely scientific interest, but can also be used as a reference for the purpose of
optimizing stability and efficiency of the material. The scientific method for these
studies involves infrared (IR) spectroscopy and Raman spectroscopy, together with
studies of the materials photoluminescence.
The reason behind this thesis is the stabilization challenges that currently limit the
practical application of perovskites. The well-researched material MAPbI3 exhibits
good qualities, but is sensitive to chemical degradation. Introducing EA+ is relevant
since it shows potential to stabilize the structure, though it has not yet been studied
how the substitution affects the properties of the material.
This thesis shows how the cation composition has a direct and measurable impact
on the local structure of the metal halide perovskites. The results present useful
information that corresponds to relevant literature. The thesis might be useful in
the next generation’s technical applications with customized features.
