Publication | Closed Access
Self‐Templating Synthesis of Hollow Co<sub>3</sub>O<sub>4</sub> Microtube Arrays for Highly Efficient Water Electrolysis
724
Citations
33
References
2016
Year
Materials ScienceOxygen Reduction ReactionChemical EngineeringEngineeringWater ElectrolysisHollow Co 3Nanoheterogeneous CatalysisCatalysisChemistryO 4Electrochemical ProcessHybrid MaterialsHierarchical PorosityElectrolysis Of WaterElectrochemistry
Abstract In spite of recent advances in the synthesis of hollow micro/nanostructures, the fabrication of three‐dimensional electrodes on the basis of these structures remains a major challenge. Herein, we develop an electrochemical sacrificial‐template strategy to fabricate hollow Co 3 O 4 microtube arrays with hierarchical porosity. The resultant unique structures and integrated electrode configurations impart enhanced mass transfer and electron mobility, ensuring high activity and stability in catalyzing oxygen and hydrogen evolution reactions. Impressively, the apparent performance can rival that of state‐of‐the‐art noble‐metal and transition‐metal electrocatalysts. Furthermore, this bifunctional electrode can be used for highly efficient overall water splitting, even competing with the integrated performance of Pt/C and IrO 2 /C.
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