Self-motile mesoporous ZnO/Pt-based Janus micromotors accelerated by bubble propulsion that provide efficient removal of explosives and dye pollutants via photodegradation under visible light are presented. Decomposition of H2O2 (the fuel) is triggered by a platinum catalytic layer asymmetrically deposited on the nanosheets of the hierarchical and mesoporous ZnO microparticles. The size-dependent motion behavior of the mesoporous micromotors is studied; the micromotors with average size ∼1.5 μm exhibit enhanced self-diffusiophoretic motion, whereas the fast bubble propulsion is detected for micromotors larger than 5 μm. The bubble-propelled mesoporous ZnO/Pt Janus micromotors show remarkable speeds of over 350 μm s–1 at H2O2 concentrations ...
Chemically powered micromotors represent an exciting research area in nanotechnology. Such artificia...
Controlling autonomous propulsion of microswimmers is essential for targeted drug delivery and appli...
We describe a highly effective bubble-propelled nanomotor for the photocatalytic decomposition of or...
Self-motile mesoporous ZnO/Pt-based Janus micromotors accelerated by bubble propulsion that provide ...
Multifunctional zerovalent-iron/platinum (ZVI/Pt) Janus bubble-propelled micromotors with high decon...
Nitroaromatic explosives such as 2,4,6-trinitrotoluene (2,4,6-TNT) and 2,4-dinitrotoluene (2,4-DNT) ...
A highly efficient light-driven photocatalytic TiO<sub>2</sub>–Au Janus micromotor with wireless ste...
Multifunctional zerovalent-iron/platinum (ZVI/Pt) Janus bubble-propelled micromotors with high decon...
We describe catalytic micromotors powered by remarkably low concentrations of chemical fuel, down to...
We describe catalytic micromotors powered by remarkably low concentrations of chemical fuel, down to...
A highly efficient light-driven photocatalytic TiO_2–Au Janus micromotor with wireless steering and ...
Nitroaromatic explosives such as 2,4,6-trinitrotoluene (2,4,6-TNT) and 2,4-dinitrotoluene (2,4-DNT) ...
Conventional photocatalytic micromotors are limited to the use of specific wavelengths of light due ...
A facile and flexible approach is developed to fabricate bubble-propelled mesoporous micromotors car...
Chemically powered micromotors represent an exciting research area in nanotechnology. Such artificia...
Controlling autonomous propulsion of microswimmers is essential for targeted drug delivery and appli...
We describe a highly effective bubble-propelled nanomotor for the photocatalytic decomposition of or...
Self-motile mesoporous ZnO/Pt-based Janus micromotors accelerated by bubble propulsion that provide ...
Multifunctional zerovalent-iron/platinum (ZVI/Pt) Janus bubble-propelled micromotors with high decon...
Nitroaromatic explosives such as 2,4,6-trinitrotoluene (2,4,6-TNT) and 2,4-dinitrotoluene (2,4-DNT) ...
A highly efficient light-driven photocatalytic TiO<sub>2</sub>–Au Janus micromotor with wireless ste...
Multifunctional zerovalent-iron/platinum (ZVI/Pt) Janus bubble-propelled micromotors with high decon...
We describe catalytic micromotors powered by remarkably low concentrations of chemical fuel, down to...
We describe catalytic micromotors powered by remarkably low concentrations of chemical fuel, down to...
A highly efficient light-driven photocatalytic TiO_2–Au Janus micromotor with wireless steering and ...
Nitroaromatic explosives such as 2,4,6-trinitrotoluene (2,4,6-TNT) and 2,4-dinitrotoluene (2,4-DNT) ...
Conventional photocatalytic micromotors are limited to the use of specific wavelengths of light due ...
A facile and flexible approach is developed to fabricate bubble-propelled mesoporous micromotors car...
Chemically powered micromotors represent an exciting research area in nanotechnology. Such artificia...
Controlling autonomous propulsion of microswimmers is essential for targeted drug delivery and appli...
We describe a highly effective bubble-propelled nanomotor for the photocatalytic decomposition of or...