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Near infrared-light responsive WS2 microengines with high-performance electro- and photo-catalytic activities.


ABSTRACT: Tungsten disulfide (WS2)-based micromotors with enhanced electrochemical and photo-catalytic activities are synthesized using a greatly simplified electrochemical deposition protocol at room temperature involving exclusively tungstic acid and sulfate as metal and sulfur sources without further building chemistry. The WS2-based micromotors exhibit dual electrochemical and photo-catalytic behavior in the inner and outer layers, respectively, due to the combination of the unique properties of the sp2 hybridized WS2 outer layer with highly reactive WS2-induced inner catalytic layers, accounting for this material's exclusive enhanced performances. A rough inner Pt-Ni layer allows tailoring the micromotor propulsion, with a speed increase of up to 1.6 times after external control of the micromotor with a magnetic field due to enhanced fuel accessibility. Such a coupling of the attractive capabilities of WS2 with enhanced micromotor movement holds considerable promise to address the growing energy crisis and environmental pollution concerns.

SUBMITTER: de la Asuncion-Nadal V 

PROVIDER: S-EPMC7012050 | biostudies-literature | 2020 Jan

REPOSITORIES: biostudies-literature

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Near infrared-light responsive WS<sub>2</sub> microengines with high-performance electro- and photo-catalytic activities.

de la Asunción-Nadal Víctor V   Jurado-Sánchez Beatriz B   Vázquez Luis L   Escarpa Alberto A  

Chemical science 20191028 1


Tungsten disulfide (WS<sub>2</sub>)-based micromotors with enhanced electrochemical and photo-catalytic activities are synthesized using a greatly simplified electrochemical deposition protocol at room temperature involving exclusively tungstic acid and sulfate as metal and sulfur sources without further building chemistry. The WS<sub>2</sub>-based micromotors exhibit dual electrochemical and photo-catalytic behavior in the inner and outer layers, respectively, due to the combination of the uniq  ...[more]

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