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Advanced materials, ISSN 0935-9648
Journal
Chemical vapor deposition, ISSN 1521-3862, 1995
Journal
Plasma processes and polymers, ISSN 1612-8850, 2004
Journal
Plasmas and polymers, ISSN 1084-0184, 1996
Journal
Advanced functional materials, ISSN 1616-301X, 2001
Journal
2009, Wiley series in materials for electronic & optoelectronic applications., ISBN 9780470065327, xxiii, 571 p., [6] p. of plates
Synthetic diamond is diamond produced by using chemical or physical processes. Like naturally occurring diamond it is composed of a three-dimensional carbon... 
Electronics | Diamonds, Artificial | Chemical vapor deposition | Materials | Electronics & communications engineering
Book
Journal Article
ChemPhysChem, ISSN 1439-4235, 04/2014, Volume 15, Issue 6, pp. 1148 - 1153
ZnO thin films having a nanocolumnar microstructure are grown by plasma‐enhanced chemical vapor deposition at 423 K on pre‐treated fluorine‐doped tin oxide... 
ZnO | perovskite | plasma‐enhanced chemical vapor deposition | solid‐state solar cells | photovoltaics | solid-state solar cells | plasma-enhanced chemical vapor deposition | Thin films | Solar cells | Perovskite | Annealing | Solar batteries | Zinc oxide | Dielectric films | Chemical vapor deposition
Journal Article
2008, 1. Aufl., ISBN 9783527408016, xii, 362
Here, leading scientists report on why and how diamond can be optimized for applications in bioelectronic and electronics. They cover such topics as growth... 
Chemical vapor deposition | Electronics & communications engineering | Diamonds, Artificial | Diamonds
Book
Journal of the American Chemical Society, ISSN 0002-7863, 09/2009, Volume 131, Issue 34, pp. 12144 - 12154
We report that nanoparticulate zirconia (ZrO2) catalyzes both growth of single-wall and multiwall carbon nanotubes (CNTs) by thermal chemical vapor deposition... 
OXYGEN | FIBERS | CHEMICAL-VAPOR-DEPOSITION | REDUCTION | AEROGELS | SILICON | X-RAY | XPS | CHEMISTRY, MULTIDISCIPLINARY | IN-SITU | QUARTZ | Thermal properties | Usage | Zirconium | Analysis | Graphite | Nanotubes | Catalysis | Chemical properties | Structure | Chemical vapor deposition
Journal Article
Carbon (New York), ISSN 0008-6223, 2013, Volume 54, pp. 58 - 67
We demonstrate that large scale high quality graphene synthesis can be performed using atmospheric pressure chemical vapor deposition (CVD) on Cu and... 
LARGE-AREA | HYDROGEN | EVAPORATION | CU | FILMS | DISSOCIATION | MATERIALS SCIENCE, MULTIDISCIPLINARY | GROWTH | CHEMISTRY, PHYSICAL | COPPER | GRAPHITE | Polyethylene terephthalate | Graphene | Chemical vapor deposition | Graphite | Atmospheric pressure | Barometric pressure | Foils | Polyethylene terephthalates | Copper | Carbon
Journal Article