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In-situ conversion of nanoflakes to nanoflowers | Abstract
International Journal of Swarm Intelligence and Evolutionary Computation

International Journal of Swarm Intelligence and Evolutionary Computation
Open Access

ISSN: 2090-4908

+1-947-333-4405

Abstract

In-situ conversion of nanoflakes to nanoflowers

Schoukens Dterli

Spinel structure metal oxides provides the effective perfor-mance towards the electro-catalytic analysis. Among the spinel structure metal oxides, ZnCo2O4 has effective in the area of photocatalyst, gas sensor, li-ion batteries, supercapacitors and electro-oxidation. The performance of direct methanol fuel cells hinges on the activity of the catalyst. To enhance the elec-tro-catalytic activity, a flower-like nanostructure of ZnCo0O4 assembled on nickel foam (NF) via microwave irradiation pro-cess, the whole process was finished within 15 min.

Published Date: 2020-12-18; Received Date: 2020-11-25

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