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- W4310243783 abstract "Most magnetoplasmonic nanoassemblies with tunable geometries are commonly fabricated by the wet assembly approach, which is greatly restricted by the high complexity and severe conditions. This study applied a facile one-step arc discharge to fabricate graphite-encapsulated magnetic core-gold satellite ([email protected]) nanoassembly with tailorable morphologies (35.5–58.8 nm of magnetic cores with 4.91- 0.335 nm of shells, and 4.63–9.01 nm of Au satellites with 1–4 graphite layers of shells) and tunable surface functionalization (hydrophobization, amination). The specific formation processes of graphite shells (i.e., dissolution-reprecipitation-graphitization for shells over magnetic cores, deposition-graphitization for shells over Au satellites) is essential to generate this unique nanoassembly. An storage-dependent consuming time for the removal of Cr(VI) by aminated [email protected] presented an excellent negative linearity with [Au wt.%]/[Au satellite diameter]3. The reusability of aminated [email protected] could be significantly aroused by the radio-frequency plasma treatment with an enhancement of 198–894 %. Hydrophobic [email protected] could converse nitroaromatics recycled with an excellent negative linearity of catalytic activity values to the diameter of Au satellites. This work unlocks a versatile platform to design and produce magnetoplasmonic nanoassemblies with ideal complex nanostructures and surface functionality." @default.
- W4310243783 created "2022-11-30" @default.
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- W4310243783 date "2023-03-01" @default.
- W4310243783 modified "2023-10-02" @default.
- W4310243783 title "Arc-integration of graphite-coated plasmonic satellite-magnetic core nanoassembly: Efficient tailoring of nanostructure/functionality for catalysis of pollutants" @default.
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- W4310243783 doi "https://doi.org/10.1016/j.apsusc.2022.155852" @default.
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