A hydrophobic three-dimensionally networked boron-doped diamond electrode towards electrochemical oxidationElectronic supplementary information (ESI) available. See DOI: 10.1039/c6cc03866b

A boron-doped diamond electrode with a three-dimensional network was fabricated on a mesh titanium substrate. Properties such as higher surface area, enhanced mass transfer and a hydrophobic surface endowed the prepared electrode with excellent electrochemical oxidation ability towards contaminants....

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Main Authors He, Yapeng, Lin, Haibo, Wang, Xue, Huang, Weimin, Chen, Rongling, Li, Hongdong
Format Journal Article
Published 16.06.2016
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Abstract A boron-doped diamond electrode with a three-dimensional network was fabricated on a mesh titanium substrate. Properties such as higher surface area, enhanced mass transfer and a hydrophobic surface endowed the prepared electrode with excellent electrochemical oxidation ability towards contaminants. Three-dimensionally networked boron-doped diamond with a microstructure and enhanced mass transfer showed excellent electro-oxidation ability towards contaminants.
AbstractList A boron-doped diamond electrode with a three-dimensional network was fabricated on a mesh titanium substrate. Properties such as higher surface area, enhanced mass transfer and a hydrophobic surface endowed the prepared electrode with excellent electrochemical oxidation ability towards contaminants. Three-dimensionally networked boron-doped diamond with a microstructure and enhanced mass transfer showed excellent electro-oxidation ability towards contaminants.
Author Wang, Xue
Huang, Weimin
Chen, Rongling
Lin, Haibo
He, Yapeng
Li, Hongdong
AuthorAffiliation Jilin University
College of Chemistry
State Key Laboratory of Superhard Materials
Key Laboratory of Physics and Technology for Advanced Batteries of Ministry of Education
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Snippet A boron-doped diamond electrode with a three-dimensional network was fabricated on a mesh titanium substrate. Properties such as higher surface area, enhanced...
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