Combination of Multiple Operando and In-Situ Characterization Techniques in a Single Cluster System for Atomic Layer Deposition: Unraveling the Early Stages of Growth of Ultrathin Al2O3 Films on Metallic Ti Substrates

Author:

Morales Carlos1ORCID,Mahmoodinezhad Ali1,Tschammer Rudi1,Kosto Julia1,Alvarado Chavarin Carlos2,Schubert Markus Andreas2,Wenger Christian2ORCID,Henkel Karsten1ORCID,Flege Jan Ingo1ORCID

Affiliation:

1. Applied Physics and Semiconductor Spectroscopy, Brandenburg University of Technology Cottbus-Senftenberg, 03046 Cottbus, Germany

2. IHP—Leibniz Institut fuer Innovative Mikroelektronik, 15236 Frankfurt, Germany

Abstract

This work presents a new ultra-high vacuum cluster tool to perform systematic studies of the early growth stages of atomic layer deposited (ALD) ultrathin films following a surface science approach. By combining operando (spectroscopic ellipsometry and quadrupole mass spectrometry) and in situ (X-ray photoelectron spectroscopy) characterization techniques, the cluster allows us to follow the evolution of substrate, film, and reaction intermediates as a function of the total number of ALD cycles, as well as perform a constant diagnosis and evaluation of the ALD process, detecting possible malfunctions that could affect the growth, reproducibility, and conclusions derived from data analysis. The homemade ALD reactor allows the use of multiple precursors and oxidants and its operation under pump and flow-type modes. To illustrate our experimental approach, we revisit the well-known thermal ALD growth of Al2O3 using trimethylaluminum and water. We deeply discuss the role of the metallic Ti thin film substrate at room temperature and 200 °C, highlighting the differences between the heterodeposition (<10 cycles) and the homodeposition (>10 cycles) growth regimes at both conditions. This surface science approach will benefit our understanding of the ALD process, paving the way toward more efficient and controllable manufacturing processes.

Funder

Federal Ministry of Education and Research of Germany (BMBF) within the iCampus2 project

European Regional Development Fund

Postdoc Network Brandenburg

BTU/BAM in the framework of the BTU-BAM Graduate School »Trustworthy Hydrogen«

Publisher

MDPI AG

Subject

Inorganic Chemistry

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