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contributor authorسید امین رونقیen
contributor authorحسین عشقیen
contributor authorS. Scudinoen
contributor authorA. Vyalikhen
contributor authorD. E. P. Vanpouckeen
contributor authorW. Gruneren
contributor authorS. Oswalden
contributor authorعلیرضا کیانی رشیدen
contributor authorM. Samadi Khoshkhooen
contributor authorU. Scheleren
contributor authorJ. Eckerten
contributor authorSeyyed Amin Rounaghifa
contributor authorHossein Eshghifa
contributor authorAli Reza Kiani Rashidfa
date accessioned2020-06-06T13:31:05Z
date available2020-06-06T13:31:05Z
date issued2016
identifier urihttps://libsearch.um.ac.ir:443/fum/handle/fum/3358179?locale-attribute=en&show=full
description abstractHexagonal Aluminium nitride (h-AlN) is an important wide-bandgap semiconductor material which

is conventionally fabricated by high temperature carbothermal reduction of alumina under toxic

ammonia atmosphere. Here we report a simple, low cost and potentially scalable mechanochemical

procedure for the green synthesis of nanostructured h-AlN from a powder mixture of Aluminium and

melamine precursors. A combination of experimental and theoretical techniques has been employed

to provide comprehensive mechanistic insights on the reactivity of melamine, solid state metalorganic

interactions and the structural transformation of Al to h-AlN under non-equilibrium ball milling

conditions. The results reveal that melamine is adsorbed through the amine groups on the Aluminium

surface due to the long-range van der Waals forces. The high energy provided by milling leads to the

deammoniation of melamine at the initial stages followed by the polymerization and formation of

a carbon nitride network, by the decomposition of the amine groups and, finally, by the subsequent

diffusion of nitrogen into the Aluminium structure to form h-AlN.
en
languageEnglish
titleMechanochemical route to the synthesis of nanostructured Aluminium nitrideen
typeJournal Paper
contenttypeExternal Fulltext
subject keywordsHexagonal Aluminium nitride (h-AlN)en
subject keywordsbandgap semiconductor materialen
subject keywordsaluminaen
subject keywordsmechanochemicalen
journal titleScientific Reportsfa
pages11-Jan
journal volume6
journal issue33375
identifier linkhttps://profdoc.um.ac.ir/paper-abstract-1058269.html
identifier articleid1058269


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