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- W4246501855 abstract "Nanomaterials, such as nanocomposites, nanorods, nanotubes and graphenes, are nowadays almost past the title novel materials, they have been widely investigated and used as either promising or already proven materials for various applications ranging from electronics and black body coatings to fuel cells and supercapacitors (1). Such advanced nanomaterials, independently of their chemical composition, are also used for the delivery of therapeutic agents, including biomolecules targeting disease sites, for bioimaging, or in general for biomedical engineering (2). Besides the production of CBNs by exfoliation, epitaxial growth, CVD processes, and many other methods, an important method nowadays concerns the use of plasmas. In general, plasma based processes are widely used for technological applications (3). They are employed in microelectronics (4), or for example for the deposition of functional coatings and nanosystems (5). In particular low temperature reactive plasmas with their distinctive non equilibrium character provide an excellent tool for the production of novel CBNs. They are nowadays widely used for the deposition of aligned nanotube carpets, nanowalls, the synthesis of graphene, and self-standing graphene, for the controlled production of nanoparticles and for example for the manufacturing of highly porous structured surfaces (6-10). Differences in the morphology of plasma produced CBNs are caused sometimes by a small changes of the process parameters, like small variations in pulse frequency (7) or temperature (6, 11). The control and the understanding of the plasma is therefore essential in order to control the synthesis of the targeted materials. This requires enhanced efforts in plasma modelling and plasma diagnostics." @default.
- W4246501855 created "2022-05-12" @default.
- W4246501855 date "2017-01-01" @default.
- W4246501855 modified "2023-09-25" @default.
- W4246501855 title "(Invited) Plasma Synthesis of Conductive Carbon Based Nanomaterials" @default.
- W4246501855 doi "https://doi.org/10.1149/ma2017-01/17/1024" @default.
- W4246501855 hasPublicationYear "2017" @default.
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