Atomic and Molecular Layer Deposition of Functional Thin Films Based on Rare Earth Elements

Author:

Ghazy Amr1ORCID,Zanders David2ORCID,Devi Anjana2345ORCID,Karppinen Maarit1ORCID

Affiliation:

1. Department of Chemistry and Materials Science Aalto University FI‐00076 Espoo Finland

2. Inorganic Materials Chemistry Ruhr University Bochum Universitätsstr. 150 44801 Bochum Germany

3. Leibniz Institute for Solid State and Materials Research Helmholtzstr. 20 01069 Dresden Germany

4. Chair of Materials Chemistry TU Dresden Bergstrasse 66 01069 Dresden Germany

5. Fraunhofer Institute for Microelectronic Circuits and Systems Finkenstr. 61 47057 Duisburg Germany

Abstract

AbstractHigh‐quality rare earth element (R) based thin films are in demand for applications ranging from (opto)electronics and energy conversion/storage to medical diagnostics, imaging and security technologies. Atomic layer deposition (ALD) offers large‐area homogeneous and conformal ultrathin films and is uniquely suited to address the requirements set by the potential applications of R‐based thin films. The history starts from the 1990s, when the first electroluminescent R‐doped thin films were grown with ALD. The interest soon expanded to rare earth element oxide layers as high‐k gate dielectrics in semiconductor devices, and later to complex ternary and quaternary perovskite oxides with novel functional properties. The most recent advancements related to the combined atomic/molecular layer deposition (ALD/MLD) have rapidly expanded the family of R‐organic hybrid materials with intriguing luminescence and up‐conversion properties. This review provides up‐to‐date insights to the current state of ALD and ALD/MLD research of R‐based thin films and highlights their application potential.

Funder

Leibniz-Gemeinschaft

HORIZON EUROPE European Research Council

Publisher

Wiley

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