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Research Article Open access CC BY 4.0

Synthesis of Ultra-long Hollow Mercury Selenide (HgSe) Chalcogenide Nanofibers from Co and Ni Sacrificial Nanofibers

Nche George Ndifor-Angwafor, Mominou Nchare, Tchuifon Tchuifon Donald Raoul, Ngakou Sadeu Christian, Anagho Solomon Gabche, Nosang V. Myung

Chemical Science International Journal · pp. 1–8 · Published 3 Oct 2017

10.9734/CSJI/2017/36678

Abstract

A general synthetic method has been used to fabricate Co and Ni nanofibers. By using the electrospinning technique followed by galvanic displacement reaction, we have successfully prepared ultra-long hollow chalcogen and chalcogenide nanofibers. The outstanding features of this approach to get ultra-long sacrificial nanofibers with controlled dimensions and morphology, thereby imparting control over the composition and shape of the nanostructures evolved during galvanic displacement reaction are its simplicity, effectiveness and ease of assembly. The aim of this study is to exploit the structural and compositional changes during the formation of HgSe chalcogenide with a view of fabricating a mercury sensor.

Co nanofiber Ni nanofiber galvanic displacement HgSe chalcogenide

Cited by 1

Study of the Stoichiometry Effect on the Interaction of Hexagonal HgSe with Electromagnetic Radiation

F. Ghalouci, L. Ghalouci, M. Safer · Springer Proceedings in Energy · 2020

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