Compact sample environment for in situ X-ray scattering during spin-coating

Author:

Kneschaurek Ekaterina1ORCID,Hinderhofer Alexander1ORCID,Hofferberth Bernd1ORCID,Scheffczyk Niels1ORCID,Pithan Linus1ORCID,Zimmermann Paul1ORCID,Merten Lena1ORCID,Bertram Florian2ORCID,Schreiber Frank1ORCID

Affiliation:

1. Institute of Applied Physics, University of Tübingen 1 , 72076 Tübingen, Germany

2. Deutsches Elektronen-Synchrotron DESY 2 , Notkestr. 85, 22607 Hamburg, Germany

Abstract

We demonstrate a compact sample environment for the in situ study of crystallization kinetics of thin films on synchrotron beamlines, featuring atmospheric control, automated deposition, spin-coating, and annealing stages. The setup is suitable for studying thin film growth in real time using grazing-incidence X-ray diffraction techniques. Humidity and oxygen levels are being detected by sensors. The spinning stage exhibits low vertical oscillation amplitude (∼3μm at speeds up to 10 000 rpm) and can optionally be employed for antisolvent application or gas quenching to investigate the impact of these techniques, which are often used to assist thin film growth. Differential reflectance spectroscopy is implemented in the spin-coater environment for inspecting thin film thickness and optical properties. The infrared radiation-based annealing system consists of a halogen lamp and a holder with an adjustable lamp-to-sample distance, while the sample surface temperature is monitored by a pyrometer. All features of the sample environment can be controlled remotely by the control software at synchrotron beamlines. In order to test and demonstrate the performance, the crystallization pathway of the antisolvent-assisted MAPbI3 (MA = methylammonium) perovskite thin film during the spinning and annealing stages is monitored and discussed.

Funder

Bundesministerium für Bildung und Forschung

Publisher

AIP Publishing

Subject

Instrumentation

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