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- W4210400818 abstract "Abstract For the low‐cost production of graphene (G)‐included composites, the growth of graphene on a transition metal in hydrocarbon flames is introduced, where the hydrocarbons are adsorbed on the metal surface, followed by catalytic decomposition, leading to continuous G formation. On the other hand, the flame synthesis of G is still a batch process, limiting the practical applications of such materials. Moreover, the hybridization of G for enhanced catalytic activities requires additional reaction and separation steps. Here, a coaxial multiphase flame is generated and combined with a rotating Cu–Ni foil and ultrasonic bath for the continuous‐flow assembly of ternary G composites with low‐cost and rapid implementation. The continuous flows to generate a multicomponent flame consist of MoS 2 particle‐laden N 2 gas (inner), titanium isopropoxide vapor‐laden CH 4 ‐air (middle), and ethanol liquid (outer), while Cu–Ni foil plies between the flame and ultrasonic bath for the assembly and dispersion of MoS 2 –TiO 2 @G composites. The configuration of the composite can be modulated by replacing the MoS 2 flow with a CdS flow to construct CdS–TiO 2 @G. From photocatalytic H 2 production and CO 2 reduction tests, the developed coaxial flame provides comparable performance with analogous architectures from the usual multistep methods despite the high‐throughput production." @default.
- W4210400818 created "2022-02-08" @default.
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- W4210400818 date "2022-02-04" @default.
- W4210400818 modified "2023-10-16" @default.
- W4210400818 title "Coaxial Multiphase Flame for Continuous‐Flow Assembly of Ternary Nanocomposite Photocatalysts" @default.
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- W4210400818 doi "https://doi.org/10.1002/adfm.202110471" @default.
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