Artigo Acesso aberto Revisado por pares

Electrodeposition of Aluminum-Carbon Nanotube Composite from Room-Temperature Molten Salt Electrolyte

2006; The Electrochemical Society of Japan; Volume: 74; Issue: 3 Linguagem: Inglês

10.5796/electrochemistry.74.233

ISSN

2186-2451

Autores

Takashi YATSUSHIRO, Nobuyuki KOURA, Satoshi Nakano, Koichi Ui, Ken Takeuchi,

Tópico(s)

Semiconductor materials and interfaces

Resumo

The aluminum-carbon nanotube composite (Al-CNT composite) much improves the properties of aluminum such as the toughness and the electrical conductivity. However, the manufacturing procedure for producing the Al-CNT composite requires multistage processes. We obtained electrolytically the Al-CNT composite coating from a 66.7 mol%AlCl3–33.3 mol%1-ethyl-3-methylimidazolium chloride bath containing CNT in a single process for the first time. We also visualized and clarified the process whereby solid particle such as CNT was co-deposited with the aluminum, and proved the co-depositing mechanism that previously had been understood only theoretically and conceptually. Namely, we show that the CNT was adsorbed on the cathode, and immediately seized by the initial depositing nucleus of the aluminum, then completely covered by both the grown nucleus and the newly generated initial depositing nuclei, and finally buried in the composite.

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