Oxides / Metal Oxides
Oxide Epitaxy
Oxide thin film materials start to play a more and more important role nowadays. Especially with the topic of Quantum Technology large research efforts have been dedicated in growing and combining oxide films and structures in Silicon Photonics. The interest in oxide deposition technologies is further fed by the limits that standard Silicon technologies are approaching (high-K material research) and by the wide range of useful properties that oxides exhibit (high dielectricity permittivities, piezo-, pyro-, and ferroelectricity, transparency, optical non linearity, high Tc-superconductivity, colossal magneto-resistivity, quantum para-electricity and giant piezoelectricity). The structural quality of oxide heterostructures now rivals that of the best conventional semiconductors.
Microelectronics
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High-k di-electric Semiconductors (GateOxide Material such as e.g. HfO2))

Transparent conductive materials (ITO)
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Superconductors in Quantum Technology: BaTiO3, SrTiO3, Ceramics: BaxSr1-xTiO3
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BTO shows a large Pockels coefficient (linear electro-optic effect) and low optical loss, and is therefore of significant interest for devices essential to integrated silicon photonics (modulators, phased arrays, tunable resonators)

Energy harvesting (Photovoltaics using Perovskites, Perovskite light-emitting diodes (PeLEDs))
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(Gas) sensing (exhealed breath (lung cancer diagnosis), water (pollution, wastewater purification))
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Transition-metal oxides (Metal Oxide Ceramics) such as TiO2, ZnO, NiO, Fe2O3, SnO2, and others exhibiting semiconductor properties
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Photocatalysis and Biomedicine
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Photocatalysis (Tungsten Oxides)
Biomedicine (MO Nanoparticles (TiO2) in therapy, wound healing)

Supercapacitors (electrodes for redox charge transfer)
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Battery Components (Oxides of Ni, Co, Zn in ionic batteries)
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Related products
References / Publications
- Design of Complex Oxide Interfaces by Oxide Molecular Beam Epitaxy
- High-temperature superconductivity at the lanthanum cuprate/lanthanum–strontium nickelate interface
- A manufacturable platform for photonic quantum computing
- Bi-Directional Growth of Thin Films: Unlocking Anisotropic Ferromagnetism and Superconductivity
- Preparation of 20-25 nm thin films based La2/3Sr1/3MnO3 (LSMO) with Oxide Molecular Beam Epitaxy Setup
- Design and Differentiation of Quantum States at Subnanometer Scale in La2CuO4-Sr2CuO4-δ Superlattices
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