SIGNIFICANCE OF BATH TEMPERATURE IN LOADING HALLOYSITE NANOTUBE WITH A CORROSION INHIBITOR

Smart anti-corrosion coatings have gained importance over the last few decades due to its significant properties and the ability to protect metals over a long time. Halloysite nanotubes based smart coatings, in particular, are the centre of research interest as it is non-toxic, cheap and has propert...

Full description

Bibliographic Details
Main Authors: Subhalakshmi Suresh Kumar, Saeid Kakooei, Mokhtar Che Ismail, Muhammad Haris
Format: Article
Language:English
Published: UTP Press 2020-02-01
Series:Platform, a Journal of Engineering
Subjects:
Online Access:https://myjms.mohe.gov.my/index.php/paje/article/view/7336/3315
Description
Summary:Smart anti-corrosion coatings have gained importance over the last few decades due to its significant properties and the ability to protect metals over a long time. Halloysite nanotubes based smart coatings, in particular, are the centre of research interest as it is non-toxic, cheap and has properties similar to carbon nanotubes. Hence there is a need to study the different parameters affecting the loading efficiency of halloysite nanotubes. In this paper, Sodium diethyldithiocarbamate trihydrate was loaded into the halloysite nanotubes in a vaporiser using ethanol as the solvent at different bath temperatures of 80°C, 60°C and 40°C. The obtained samples were characterised using Scanning Electron Microscope, Fourier Transform Infrared Spectroscopy, UV-Vis Spectroscopy to study the structure and morphology, the bonds formed by various components, the transmittance and the absorbance. The results showed that the halloysite nanotubes loaded at 80°C had higher loading efficiency than the ones loaded at 60°C and 40°C.
ISSN:2636-9877