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  • Electrostatic Self-Assembly of Au Nanoparticles onto Thermosensitive Magnetic Core-Shell Microgels for Thermally Tunable and Magnetically Recyclable Catalysis.

Electrostatic Self-Assembly of Au Nanoparticles onto Thermosensitive Magnetic Core-Shell Microgels for Thermally Tunable and Magnetically Recyclable Catalysis.

Small (Weinheim an der Bergstrasse, Germany) (2015-02-05)
Guoqiang Liu, Daoai Wang, Feng Zhou, Weimin Liu
ABSTRACT

A facile route to fabricate a nanocomposite of Fe3O4@poly[N-isopropylacrylamide (NIPAM)-co-2-(dimethylamino)ethyl methacrylate (DMAEMA)]@Au (Fe3O4@PND@Au) is developed for magnetically recyclable and thermally tunable catalysis. The negatively charged Au nanoparticles with an average diameter of 10 nm are homogeneously loaded onto positively charged thermoresponsive magnetic core-shell microgels of Fe3O4@poly(NIPAM-co-DMAEMA) (Fe3O4@PND) through electrostatic self-assembly. This type of attachment offers perspectives for using charged polymeric shell on a broad variety of nanoparticles to immobilize the opposite-charged nanoparticles. The thermosensitive PND shell with swollen or collapsed properties can be as a retractable Au carrier, thereby tuning the aggregation or dispersion of Au nanoparticles, which leads to an increase or decrease of catalytic activity. Therefore, the catalytic activity of Fe3O4@PND@Au can be modulated by the volume transition of thermosensitive microgel shells. Importantly, the mode of tuning the aggregation or dispersion of Au nanoparticles using a thermosensitive carrier offers a novel strategy to adjust and control the catalytic activity, which is completely different with the traditional regulation mode of controlling the diffusion of reactants toward the catalytic Au core using the thermosensitive poly(N-isopropylacrylamide) network as a nanogate. Concurrent with the thermally tunable catalysis, the magnetic susceptibility of magnetic cores enables the Fe3O4@PND@Au nanocomposites to be capable of serving as smart nanoreactors for thermally tunable and magnetically recyclable catalysis.

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Sigma-Aldrich
2,2′-azobis(2-metilpropionitrile), 98%
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3-(Trimethoxysilyl)propyl methacrylate, 98%
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Sodio citrato tribasico, ≥99%, FG
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Acetonitrile, anhydrous, 99.8%
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Ammonio acetato, for molecular biology, ≥98%
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Ammonium acetate solution, for molecular biology, 7.5 M
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N,N′-Methylenebisacrylamide, powder, for molecular biology, suitable for electrophoresis, ≥99.5%
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N-Isopropylacrylamide, 97%
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2-(Dimethylamino)ethyl methacrylate, contains 700-1000 ppm monomethyl ether hydroquinone as inhibitor, 98%
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3-(Trimethoxysilyl)propyl methacrylate, ≥97%
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N-Isopropylacrylamide, ≥99%
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Ammoniaca, 4 M in methanol
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Ammoniaca, 0.4 M in THF
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Ammonio acetato, 99.999% trace metals basis
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Sodio citrato tribasico, BioUltra, for molecular biology
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Etilenglicole, anhydrous, 99.8%
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Sodio citrato tribasico, ACS reagent, ≥99.0%
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N,N′-Methylenebisacrylamide solution, suitable for electrophoresis, 2% in H2O
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Sodium 3-mercapto-1-propanesulfonate, technical grade, 90%
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N,N′-Methylenebis(acrylamide), 99%
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Ethylene glycol 5 M solution
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Etilenglicole, BioUltra, ≥99.5% (GC)
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Acetonitrile, electronic grade, 99.999% trace metals basis
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Sodio citrato tribasico, for molecular biology, ≥99%
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N,N′-Methylenebisacrylamide, suitable for electrophoresis (after filtration or allowing insolubles to settle)
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Sodio citrato tribasico, meets USP testing specifications
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Ammonio acetato, reagent grade, ≥98%
Supelco
Ethylene glycol solution, NMR reference standard, 80% in DMSO-d6 (99.9 atom % D), NMR tube size 5 mm × 8 in.
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Sodio citrato tribasico, ≥98%
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Ammonio acetato, BioXtra, ≥98%