Bulletin of Chemical Reaction Engineering & Catalysis
2015: BCREC Volume 10 Issue 3 Year 2015 (December 2015)

Production of Silver Nanoparticle Chains inside Single Wall Carbon Nanotube with a Simple Liquid Phase Adsorption

Alimin Alimin (Department of Chemistry, Universitas Gadjah Mada, Sekip Utara BLS 21, Yogyakarta 55281 || Indonesia Department of Chemistry, Universitas Halu Oleo, Kampus Hijau Bumi Tridharma Anduonohu, Kendari 93232)
Narsito Narsito (Department of Chemistry, Universitas Gadjah Mada, Sekip Utara BLS 21, Yogyakarta 55281)
Indriana Kartini (Department of Chemistry, Universitas Gadjah Mada, Sekip Utara BLS 21, Yogyakarta 55281)
Sri J. Santosa (Department of Chemistry, Universitas Gadjah Mada, Sekip Utara BLS 21, Yogyakarta 55281)



Article Info

Publish Date
30 Dec 2015

Abstract

This article described a successful growing of silver nanoparticle chains (AgNPs) within the internal spaces of single wall carbon nanotube (SWCNT). The use of ethanol in the liquid phase adsorption could produce relatively long silver nanoparticle chains encapsulated in the nanotubes (AgNPs-SWCNT). A significant decrease of nitrogen uptake and radial breathing mode (RBM) as well as tan-gential mode (G band) upshifts of AgNPs-SWCNT specimen suggest that the nanoparticles have been encapsulated in the internal tube spaces of the nanotube. The presence of metallic silvers on the exter-nal surface of the carbon nanotube that was observed by scanning electron microscope and examined by X-ray diffraction technique was successfully able to be removed by ultrasonic using 1 M HNO3. The remaining small residue obtained after thermal gravimetric analysis up to 1100 K supports the sugges-tion on the presence of silver encapsulated inside SWCNT. Copyright © 2015 by Authors, Published by BCREC Group. This is an open access article under the CC BY-SA License (https://creativecommons.org/licenses/by-sa/4.0).

Copyrights © 2015






Journal Info

Abbrev

bcrec

Publisher

Subject

Chemical Engineering, Chemistry & Bioengineering Chemistry

Description

Bulletin of Chemical Reaction Engineering & Catalysis, a reputable international journal, provides a forum for publishing the novel technologies related to the catalyst, catalysis, chemical reactor, kinetics, and chemical reaction engineering. Scientific articles dealing with the following topics in ...