CVD's processing can be used to produce graphene and nanomaterials such as carbon nanotubes and silicon nanowires. Its PVT200 system is designed to grow silicon carbide crystals for the ...
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AZoOptics on MSNGraphene-Based Absorbers for High-Speed Mode-Locking in Laser SystemsGraphene-based saturable absorbers show strong potential for high-speed laser systems. Learn how integrating graphene with silicon photonics improves mode-locking and ultrafast pulse generation.
Technical University of Munich, Campus Straubing for Biotechnology and Sustainability, Chair of Biogenic Functional Materials, Schulgasse 22, Straubing 94315, Germany ...
This chapter focuses on the hydrophobic character of the fluoropolymers, and the tuning of their morphology and crystallinity that can be achieved by means of chemical vapor deposition (CVD).
In the 2025/26 priorities and operational planning guidance we indicated that cardiovascular disease (CVD) prevention is a key priority and that we intend to continue to prioritise its prevention and ...
The field of plasma enhanced‐chemical vapour deposition (PE‐CVD) of polymers is fascinating because it succeeds in polymerizing monomer units also at low pressure (<1 Torr), that is, under ...
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