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Titlebook: Chemical Vapor Deposition Growth and Characterization of Two-Dimensional Hexagonal Boron Nitride; Roland Yingjie Tay Book 2018 Springer Na

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Book 2018ion (CVD). It also presents several significant breakthroughs in the authors’ understanding of the growth mechanism and development of new growth techniques, which are now well known in the field. Of particular importance is the pioneering work showing experimental proof that 2D crystals of h-BN can
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Growth of Large Single Crystalline Monolayer Boron Nitride Hexagons,rolled nucleation resulting in the formation of nano-sized crystals. To obtain large-area high quality h-BN single crystals, metal catalytic substrates such as Cu and Ni are still required. It is observed that the h-BN domains tend to nucleate in the forms of triangular [.,.,.,.] or asymmetric diamond shape [.].
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P. W. de Leeuw,W. H. Birkenhägerrolled nucleation resulting in the formation of nano-sized crystals. To obtain large-area high quality h-BN single crystals, metal catalytic substrates such as Cu and Ni are still required. It is observed that the h-BN domains tend to nucleate in the forms of triangular [.,.,.,.] or asymmetric diamond shape [.].
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https://doi.org/10.1007/978-3-642-70411-6distances have been explored such as chemical vapor deposition (CVD) [.,.,.,.,.,.], surface segregation method or solid source diffusion [.,.,.,.], ion-beam sputtering deposition (IBSD) [.], pulsed-laser deposition (PLD) [., .], reactive magnetron sputtering [.] and molecular beam epitaxy (MBE) [.].
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J. M. Garrigues,C. A. Bruere-DawsonAn APCVD system was chosen for this experiment due to several known advantages as compared to low pressure (LP) CVD such as much lower Cu evaporation rate Melmed (Surf Sci 5(1):166–169, 1966) [.], fewer resources consumption, simpler design setup which made it more cost-effective for transition to industries.
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https://doi.org/10.1007/978-981-10-8809-4Two-Dimensional Materials; Hexaganol Boron Nitride Nanosheets; Atmospheric pressure Chemical Vapor Dep
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