2006•Advanced MaterialsRequires access

Carbon Nanofibers Uniformly Grown on γ‐Alumina Washcoated Cordierite Monoliths

Enrique García‐Bordejé, Ingvar Kvande, D. Chen, Magnus Rønning

Open publisher page 79 citations

Abstract

A uniform layer of carbon nanofibers is grown on a cordierite monolith by first coating the monolith with a thin layer of γ-alumina. The nanofibers form a thick, uniform layer on the monolith walls as shown in the figure, leading to the formation of a mesoporous and mechanically robust composite. The absence of microporosity in the composite and the ability to tune the thickness of the nanofiber layer suggests that these nanofibers/monolith composites may be useful as catalyst supports for liquid-phase catalytic reactions.

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What this paper is about

A uniform layer of carbon nanofibers is grown on a cordierite monolith by first coating the monolith with a thin layer of γ-alumina. The nanofibers form a thick, uniform layer on the monolith walls as shown in the figure, leading to the formation of a mesoporous and mechanically robust composite. The absence of microporosity in the composite and the ability to tune the thickness of the nanofiber layer suggests that these nanofibers/monolith composites may be useful as catalyst supports for liquid-phase catalytic reactions.

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Available abstract

A uniform layer of carbon nanofibers is grown on a cordierite monolith by first coating the monolith with a thin layer of γ-alumina. The nanofibers form a thick, uniform layer on the monolith walls as shown in the figure, leading to the formation of a mesoporous and mechanically robust composite. The absence of microporosity in the composite and the ability to tune the thickness of the nanofiber layer suggests that these nanofibers/monolith composites may be useful as catalyst supports for liquid-phase catalytic reactions.

Key concepts: Monolith, Materials science, Cordierite, Nanofiber, Layer (electronics), Carbon nanofiber, Composite material, Coating

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