Synthesis, characterizations and anti-corrosion screening of sadimine and brosadimine / Nur Anis Atirah Zulkiflee

A Schiff base is a compound that consists of carbon-nitrogen double bond with nitrogen connected to an aryl or alkyl group but not hydrogen. The objectives of this study are to synthesize Schiff bases ligands derived from salicylaldehyde and 5-bromosalicylaldehyde with ethylenediamine, to characteri...

Full description

Bibliographic Details
Main Author: Zulkiflee, Nur Anis Atirah
Format: Student Project
Language:English
Published: 2017
Subjects:
Online Access:https://ir.uitm.edu.my/id/eprint/35148/1/35148.pdf
_version_ 1796903960178589696
author Zulkiflee, Nur Anis Atirah
author_facet Zulkiflee, Nur Anis Atirah
author_sort Zulkiflee, Nur Anis Atirah
collection UITM
description A Schiff base is a compound that consists of carbon-nitrogen double bond with nitrogen connected to an aryl or alkyl group but not hydrogen. The objectives of this study are to synthesize Schiff bases ligands derived from salicylaldehyde and 5-bromosalicylaldehyde with ethylenediamine, to characterize the synthesized ligands and to carry out anti-corrosion screening on the Schiff bases ligands by weight loss method. Sadimine and Brosadimine ligands were synthesized from the condensation of salicyladehyde with ethylenediamine and 5-bromosalicylaldehyde with ethylenediamine, respectively. Both ligands were refluxed for 5 hours and yielded of 91.37 % and 92.81 %, respectively. These ligands were characterized by elemental analysis, Infrared Spectroscopy, UV-Visanalysis, melting point measurement and anti-corrosion screening. IR and UV analysis suggested the presence of C=N chromophore which confirm the compound of a Schiff base. Both ligands were tested and compared for their effectiveness as corrosion inhibitor by using different concentration, 0.001 M, 0.01 M and 0.1 M. The result stated that the ligand with heteroatom (Br) show higher percentage inhibitor efficiency as compared to the unsubtituted ligand. This may due to the increase electron density by the presence of n benzene and heteroatoms thus provide better absorptivity to the inhibitor. Also, Brosadimine has higher inhibitor efficiency due to their high molecular weight compared to Sadimine.
first_indexed 2024-03-06T02:27:52Z
format Student Project
id oai:ir.uitm.edu.my:35148
institution Universiti Teknologi MARA
language English
last_indexed 2024-03-06T02:27:52Z
publishDate 2017
record_format dspace
spelling oai:ir.uitm.edu.my:351482020-10-13T04:23:11Z https://ir.uitm.edu.my/id/eprint/35148/ Synthesis, characterizations and anti-corrosion screening of sadimine and brosadimine / Nur Anis Atirah Zulkiflee Zulkiflee, Nur Anis Atirah Laboratories. General works Schiff bases A Schiff base is a compound that consists of carbon-nitrogen double bond with nitrogen connected to an aryl or alkyl group but not hydrogen. The objectives of this study are to synthesize Schiff bases ligands derived from salicylaldehyde and 5-bromosalicylaldehyde with ethylenediamine, to characterize the synthesized ligands and to carry out anti-corrosion screening on the Schiff bases ligands by weight loss method. Sadimine and Brosadimine ligands were synthesized from the condensation of salicyladehyde with ethylenediamine and 5-bromosalicylaldehyde with ethylenediamine, respectively. Both ligands were refluxed for 5 hours and yielded of 91.37 % and 92.81 %, respectively. These ligands were characterized by elemental analysis, Infrared Spectroscopy, UV-Visanalysis, melting point measurement and anti-corrosion screening. IR and UV analysis suggested the presence of C=N chromophore which confirm the compound of a Schiff base. Both ligands were tested and compared for their effectiveness as corrosion inhibitor by using different concentration, 0.001 M, 0.01 M and 0.1 M. The result stated that the ligand with heteroatom (Br) show higher percentage inhibitor efficiency as compared to the unsubtituted ligand. This may due to the increase electron density by the presence of n benzene and heteroatoms thus provide better absorptivity to the inhibitor. Also, Brosadimine has higher inhibitor efficiency due to their high molecular weight compared to Sadimine. 2017 Student Project NonPeerReviewed text en https://ir.uitm.edu.my/id/eprint/35148/1/35148.pdf Synthesis, characterizations and anti-corrosion screening of sadimine and brosadimine / Nur Anis Atirah Zulkiflee. (2017) [Student Project] (Unpublished)
spellingShingle Laboratories. General works
Schiff bases
Zulkiflee, Nur Anis Atirah
Synthesis, characterizations and anti-corrosion screening of sadimine and brosadimine / Nur Anis Atirah Zulkiflee
title Synthesis, characterizations and anti-corrosion screening of sadimine and brosadimine / Nur Anis Atirah Zulkiflee
title_full Synthesis, characterizations and anti-corrosion screening of sadimine and brosadimine / Nur Anis Atirah Zulkiflee
title_fullStr Synthesis, characterizations and anti-corrosion screening of sadimine and brosadimine / Nur Anis Atirah Zulkiflee
title_full_unstemmed Synthesis, characterizations and anti-corrosion screening of sadimine and brosadimine / Nur Anis Atirah Zulkiflee
title_short Synthesis, characterizations and anti-corrosion screening of sadimine and brosadimine / Nur Anis Atirah Zulkiflee
title_sort synthesis characterizations and anti corrosion screening of sadimine and brosadimine nur anis atirah zulkiflee
topic Laboratories. General works
Schiff bases
url https://ir.uitm.edu.my/id/eprint/35148/1/35148.pdf
work_keys_str_mv AT zulkifleenuranisatirah synthesischaracterizationsandanticorrosionscreeningofsadimineandbrosadiminenuranisatirahzulkiflee