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In this report, millimeter-sized single-crystal monolayer graphene has been synthesized to multilayer graphene on Cu by chemical vapor deposition.
Large-sized single-crystal monolayer graphene has been synthesized to multilayer graphene with Bernal stacking order and non-Bernal stacking order on Cu by CVD under optimized growth conditions.
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Various nanocomposite and multilayer coatings (Ti/TiB2, FeMn/TiB2, Fe/VC and W/VC) were synthesized to explore three such toughening strategies: coherency strain, transformation toughening, and nanograined metals.
Cr/CrN/(Cr,N -DLC/DLC and Cr,N -DLC/DLC multilandr coatings have been synthesized using DC sputtering multilayertecoatingsto protect steel substrates from wear.
To date, a variety of MoS2/carbon composites have been synthesized as anode materials in LIBs, namely, layered MoS2/graphene composites [31], MoS2/C multilayer nanospheres [32], MoS2-CNT composite [33], multilayered graphene/MoS2 heterostructures [34], or petal-like MoS2 nanosheets space-confined in hollow mesoporous carbon spheres [35].
TiB2/Si3N4 multilayers have been synthesized by ion beam assisted deposition (IBAD).
Finally, two LaFeO3 − xNx multilayers have been synthesized with two initial atmospheres (Ar/O2 ratio are 21/7 and 21/1 sccm) where nitrogen is introduced step by step.
Multilayer carbonaceous nanomaterial has been synthesized using a two-step process: carbon nanodiscs/nanocones were fluorinated using either the direct reaction with pure F2 gas or the thermal decomposition of solid fluorinating agent (TbF4).
Functionally graded, multilayer coatings consisting of alternating TiN/TiSiN layers were synthesized in an attempt to overcome the innate brittleness of TiSiN nanocomposite coatings, whilst maintaining high hardness.
Although single-layer nanoporous graphene has proven to be effective as a reverse osmosis desalination membrane, multilayer nanoporous graphene (MNPG) is economically affordable to be synthesized.
To produce these capsules, copolymers of PMAA or PVPON bearing a known amount of amino-containing cross-linked centers were synthesized and used for hydrogen-bonded multilayer assembly on silicon discs at pH = 2.6 followed by 1-ethyl-3- 3- dimethylamino propyl carbodiimide hydrochloride (EDC)-assisted cross-linking and core dissolution (see Experimental Methods for details).
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