1Department of Chemistry, Rajarajeswari College of Engineering, Bangalore, Karnataka560074, India
2Department of Chemistry, Dr. Ambedkar Institute of Technology, Bangalore, Karnataka560056, India
3Department of Chemistry, Sambhram Institute of Technology, Bangalore, Karnataka560097, India
4Department of Mechanical Engineering, Rajarajeswari College of Engineering, Bangalore, Karnataka560074, India
*Corresponding Author Pruthviraj RD, Department of Chemistry, Rajarajeswari college of Engineering, Mysore Raod, Bangalore, Karnataka560074, India E-mail: pruthvirajrd@gmail.com
Two environmental friendly Ocimum sanctum (Tulasi) inhibitors 6-diallylamino-1,3,5-triazine-2,4- dithiol monosodium (DAN) and 6-dibutylamino-1,3,5-triazine-2,4-dithiol mono sodium (DBN) were synthesized and their corrosion inhibition for aluminum 8088 in a 1 M HCl solution was studied using weight loss methods, electrochemical measurements, and scanning electron microscopy (SEM) techniques. The inhibition efficiency of both DAN and DBN improved with increases in inhibitor concentration but decreased with increases in temperature. Results from potentiodynamic polarization and EIS showed that the corrosion inhibition efficiency of DAN and DBN was excellent. The adsorption of inhibitors on the aluminum 8088 surface followed Langmuir adsorption isotherms. Morphology observation revealed that the aluminum 8088 was greatly protected by these Ocimum sanctum (Tulasi) inhibitors.
Aluminum 8088, Potentiodynamic polarization, Corrosion inhibition