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- W3144509609 abstract "Abstract A new class of catalytically self‐propelled nanomotors were fabricated by modifying natural clay tubes, halloysite, with randomly distributed particles of MnO 2 and Fe 3 O 4 . The prepared MnO 2 –Fe 3 O 4 /HNTs composites were validated to be efficient Fenton catalysts in the degradation of rhodamine B (RhB). Compared to the previous preparation of rolled‐up microtubes or other template‐assisted syntheses, this strategy has its merits in utilizing clay minerals of abundance, cheap‐price, and no complex instruments needed. The nanomotors were able to be prepared on a large scale. The MnO 2 –Fe 3 O 4 /HNTs motors displayed powerful autonomous movement, and a high velocity of up to 380 µm s −1 was achieved in 5.0 wt. % H 2 O 2 solution. For Fenton catalysis of RhB, the removal ratio of 94% dye molecules was obtained within 30 min, which was triply higher than other samples of the nonpropelling sample Fe 3 O 4 /HNTs. The autonomous movement provided adsorptive bubble separation, and the adsorption capacity was greatly enhanced by halloysite. These synergistic effects boosted the removal efficiency of dye molecules. The presence of magnetic MnO 2 –Fe 3 O 4 made these motors move directionally in external magnetic fields and provided a facile recovery for collecting heterogeneous catalysts." @default.
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- W3144509609 date "2021-05-20" @default.
- W3144509609 modified "2023-09-30" @default.
- W3144509609 title "Self‐propelling nanomotor made from halloysite and catalysis in Fenton‐like reaction" @default.
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- W3144509609 doi "https://doi.org/10.1111/jace.17821" @default.
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