CARBON PASTE ELECTRODE MODIFIED BY MOLECULARLY IMPRINTED POLY(3-AMINOPHENOL) FOR BUTYLATED HYDROXYTOLUENE (BHT) ANALYSIS BY VOLTAMMETRY

Butylated Hydroxytoluene (BHT) is a phenolic antioxidant compound that can prevent the oxidation process of products in various industries including the food industry, the cosmetic industry, and the pharmaceutical industry. BHT functions as a food preservative and additive. Excessive use of BHT can...

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Main Author: Okto Sinurat, Sunda
Format: Final Project
Language:Indonesia
Subjects:
Online Access:https://digilib.itb.ac.id/gdl/view/52127
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:52127
spelling id-itb.:521272021-02-11T10:13:37ZCARBON PASTE ELECTRODE MODIFIED BY MOLECULARLY IMPRINTED POLY(3-AMINOPHENOL) FOR BUTYLATED HYDROXYTOLUENE (BHT) ANALYSIS BY VOLTAMMETRY Okto Sinurat, Sunda Kimia Indonesia Final Project 3-aminophenol, BHT, carbon paste electrodes, molecularly imprinted polymer, voltammetry INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/52127 Butylated Hydroxytoluene (BHT) is a phenolic antioxidant compound that can prevent the oxidation process of products in various industries including the food industry, the cosmetic industry, and the pharmaceutical industry. BHT functions as a food preservative and additive. Excessive use of BHT can lead to cancer because BHT is carcinogenic so it needs to be limited in its use. In this study, a voltammetric method was developed to determine BHT levels using a carbon paste electrode (EPK) modified with a molecularly imprinted polymer (MIP) using 3-aminophenol as a monomer and BHT as a template. The use of MIP was chosen because this method was proven to be able to increase the sensitivity and selectivity of various analyte measurements. From the research that has been done, it was found that EPK modified with 3-aminophenol was able to increase the sensitivity of BHT measurements compared to unmodified EPK. Of the two voltammetry techniques used, namely Square Wave Voltammetry (SWV) and Differential Pulse Voltammetry (DPV), the SWV technique shows a higher sensitivity. BHT measurement has the highest sensitivity on MIP-modified EPK with the number of electropolymerization cycles of 10 and the composition of BHT: 3-aminophenol 1: 5. Furthermore, it is necessary to measure the performance of the electrodes including pH optimization, determining the working area, detection limits, probability, and sample analysis. Based on the literature study, the method that has been developed, BHT levels can be analyzed with EPK molecularly imprinted poly (3-aminophenol) in a large working area with good sensitivity. text
institution Institut Teknologi Bandung
building Institut Teknologi Bandung Library
continent Asia
country Indonesia
Indonesia
content_provider Institut Teknologi Bandung
collection Digital ITB
language Indonesia
topic Kimia
spellingShingle Kimia
Okto Sinurat, Sunda
CARBON PASTE ELECTRODE MODIFIED BY MOLECULARLY IMPRINTED POLY(3-AMINOPHENOL) FOR BUTYLATED HYDROXYTOLUENE (BHT) ANALYSIS BY VOLTAMMETRY
description Butylated Hydroxytoluene (BHT) is a phenolic antioxidant compound that can prevent the oxidation process of products in various industries including the food industry, the cosmetic industry, and the pharmaceutical industry. BHT functions as a food preservative and additive. Excessive use of BHT can lead to cancer because BHT is carcinogenic so it needs to be limited in its use. In this study, a voltammetric method was developed to determine BHT levels using a carbon paste electrode (EPK) modified with a molecularly imprinted polymer (MIP) using 3-aminophenol as a monomer and BHT as a template. The use of MIP was chosen because this method was proven to be able to increase the sensitivity and selectivity of various analyte measurements. From the research that has been done, it was found that EPK modified with 3-aminophenol was able to increase the sensitivity of BHT measurements compared to unmodified EPK. Of the two voltammetry techniques used, namely Square Wave Voltammetry (SWV) and Differential Pulse Voltammetry (DPV), the SWV technique shows a higher sensitivity. BHT measurement has the highest sensitivity on MIP-modified EPK with the number of electropolymerization cycles of 10 and the composition of BHT: 3-aminophenol 1: 5. Furthermore, it is necessary to measure the performance of the electrodes including pH optimization, determining the working area, detection limits, probability, and sample analysis. Based on the literature study, the method that has been developed, BHT levels can be analyzed with EPK molecularly imprinted poly (3-aminophenol) in a large working area with good sensitivity.
format Final Project
author Okto Sinurat, Sunda
author_facet Okto Sinurat, Sunda
author_sort Okto Sinurat, Sunda
title CARBON PASTE ELECTRODE MODIFIED BY MOLECULARLY IMPRINTED POLY(3-AMINOPHENOL) FOR BUTYLATED HYDROXYTOLUENE (BHT) ANALYSIS BY VOLTAMMETRY
title_short CARBON PASTE ELECTRODE MODIFIED BY MOLECULARLY IMPRINTED POLY(3-AMINOPHENOL) FOR BUTYLATED HYDROXYTOLUENE (BHT) ANALYSIS BY VOLTAMMETRY
title_full CARBON PASTE ELECTRODE MODIFIED BY MOLECULARLY IMPRINTED POLY(3-AMINOPHENOL) FOR BUTYLATED HYDROXYTOLUENE (BHT) ANALYSIS BY VOLTAMMETRY
title_fullStr CARBON PASTE ELECTRODE MODIFIED BY MOLECULARLY IMPRINTED POLY(3-AMINOPHENOL) FOR BUTYLATED HYDROXYTOLUENE (BHT) ANALYSIS BY VOLTAMMETRY
title_full_unstemmed CARBON PASTE ELECTRODE MODIFIED BY MOLECULARLY IMPRINTED POLY(3-AMINOPHENOL) FOR BUTYLATED HYDROXYTOLUENE (BHT) ANALYSIS BY VOLTAMMETRY
title_sort carbon paste electrode modified by molecularly imprinted poly(3-aminophenol) for butylated hydroxytoluene (bht) analysis by voltammetry
url https://digilib.itb.ac.id/gdl/view/52127
_version_ 1822001158584008704