Bandgap Energy of TiO₂/M-Chlorophyll Material (M=Cu²⁺, Fe³⁺)

The bandgap energy (Egap) of TiO2 material modified with metal-chlorophyll complex compounds (M = Cu2+, Fe3+) was observed. Chlorophyll (Chl) was isolated from cassava leaves, and its UV-Vis spectra showed absorption peaks in the Soret band region (410 nm) and in the Q band region (665 nm), which is...

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Main Authors: Muhammad Yusprianto, Titin Anita Zaharah, Imelda Hotmarisi Silalahi
Format: Article
Language:English
Published: Chemistry Department, Faculty of Sciences and Mathematics, Diponegoro University 2021-04-01
Series:Jurnal Kimia Sains dan Aplikasi
Subjects:
Online Access:https://ejournal.undip.ac.id/index.php/ksa/article/view/37169
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spelling doaj-64b1373bde4d4f82b2ed30cbd5d414f62021-09-03T09:54:56ZengChemistry Department, Faculty of Sciences and Mathematics, Diponegoro UniversityJurnal Kimia Sains dan Aplikasi1410-89172597-99142021-04-0124412613510.14710/jksa.24.4.126-13518527Bandgap Energy of TiO₂/M-Chlorophyll Material (M=Cu²⁺, Fe³⁺)Muhammad Yusprianto0Titin Anita Zaharah1Imelda Hotmarisi Silalahi2https://orcid.org/0000-0002-6456-6850Department of Chemistry, Faculty of Mathematics and Natural Sciences, Tanjungpura University, Pontianak, IndonesiaDepartment of Chemistry, Faculty of Mathematics and Natural Sciences, Tanjungpura University, Pontianak, IndonesiaDepartment of Chemistry, Faculty of Mathematics and Natural Sciences, Tanjungpura University, Pontianak, IndonesiaThe bandgap energy (Egap) of TiO2 material modified with metal-chlorophyll complex compounds (M = Cu2+, Fe3+) was observed. Chlorophyll (Chl) was isolated from cassava leaves, and its UV-Vis spectra showed absorption peaks in the Soret band region (410 nm) and in the Q band region (665 nm), which is the typical peak of chlorophyll. Copper(II)-chlorophyll complex was prepared from the reaction between chlorophyll and CuSO4.5H2O, while the iron(III)-chlorophyll was synthesized from chlorophyll and FeCl3.6H2O in methanol solvent under reflux at 65°C. The presence of copperand iron metals in the chlorophyll metal complexes was identified using Atomic Absorption Spectroscopy in methanol solution. The absorption of copper measured in Cu2+-Chl was 0.0488 (0.4805 mg/L), while the iron atom in Fe3+-Chl was 0.0050 (0.0195 mg/L). The UV-vis spectra demonstrate the hypsochromic shift of the Soret band to 405 nm (Cu2+-Chl) and 402 nm (Fe3+-Chl). The Infrared spectra of chlorophyll after being complexed with copper(II) shows the increase of vibrational absorption wavenumber of the C=N group from 1225.06 cm-1 to 1241.94 cm-1 indicates the coordination of the metal ion on the N atom in the pyrrole ring. The shift in the absorption band on the Fe3+-Chl spectrum was seen for the C=O ester group from 1720.49 cm-1 to 1721.10 cm-1 indicating the metal ion bonding in the C=O group of esters. The DR-UVis analysis of TiO2/metal-chlorophyll shows a bathochromic shift towards the visible light region. By using the Tauc plot method, it was observed that the Egap of TiO2 reduces from 3.08 eV to 2.89 eV and 2.93 eV in the compound of TiO2/Cu2+-Chl and TiO2/Fe3+-Chl, respectively.https://ejournal.undip.ac.id/index.php/ksa/article/view/37169chlorophyllcu2+-chlorophyll complexfe3+-chlorophyll complextauc plot methodbandgap energy
collection DOAJ
language English
format Article
sources DOAJ
author Muhammad Yusprianto
Titin Anita Zaharah
Imelda Hotmarisi Silalahi
spellingShingle Muhammad Yusprianto
Titin Anita Zaharah
Imelda Hotmarisi Silalahi
Bandgap Energy of TiO₂/M-Chlorophyll Material (M=Cu²⁺, Fe³⁺)
Jurnal Kimia Sains dan Aplikasi
chlorophyll
cu2+-chlorophyll complex
fe3+-chlorophyll complex
tauc plot method
bandgap energy
author_facet Muhammad Yusprianto
Titin Anita Zaharah
Imelda Hotmarisi Silalahi
author_sort Muhammad Yusprianto
title Bandgap Energy of TiO₂/M-Chlorophyll Material (M=Cu²⁺, Fe³⁺)
title_short Bandgap Energy of TiO₂/M-Chlorophyll Material (M=Cu²⁺, Fe³⁺)
title_full Bandgap Energy of TiO₂/M-Chlorophyll Material (M=Cu²⁺, Fe³⁺)
title_fullStr Bandgap Energy of TiO₂/M-Chlorophyll Material (M=Cu²⁺, Fe³⁺)
title_full_unstemmed Bandgap Energy of TiO₂/M-Chlorophyll Material (M=Cu²⁺, Fe³⁺)
title_sort bandgap energy of tio₂/m-chlorophyll material (m=cu²⁺, fe³⁺)
publisher Chemistry Department, Faculty of Sciences and Mathematics, Diponegoro University
series Jurnal Kimia Sains dan Aplikasi
issn 1410-8917
2597-9914
publishDate 2021-04-01
description The bandgap energy (Egap) of TiO2 material modified with metal-chlorophyll complex compounds (M = Cu2+, Fe3+) was observed. Chlorophyll (Chl) was isolated from cassava leaves, and its UV-Vis spectra showed absorption peaks in the Soret band region (410 nm) and in the Q band region (665 nm), which is the typical peak of chlorophyll. Copper(II)-chlorophyll complex was prepared from the reaction between chlorophyll and CuSO4.5H2O, while the iron(III)-chlorophyll was synthesized from chlorophyll and FeCl3.6H2O in methanol solvent under reflux at 65°C. The presence of copperand iron metals in the chlorophyll metal complexes was identified using Atomic Absorption Spectroscopy in methanol solution. The absorption of copper measured in Cu2+-Chl was 0.0488 (0.4805 mg/L), while the iron atom in Fe3+-Chl was 0.0050 (0.0195 mg/L). The UV-vis spectra demonstrate the hypsochromic shift of the Soret band to 405 nm (Cu2+-Chl) and 402 nm (Fe3+-Chl). The Infrared spectra of chlorophyll after being complexed with copper(II) shows the increase of vibrational absorption wavenumber of the C=N group from 1225.06 cm-1 to 1241.94 cm-1 indicates the coordination of the metal ion on the N atom in the pyrrole ring. The shift in the absorption band on the Fe3+-Chl spectrum was seen for the C=O ester group from 1720.49 cm-1 to 1721.10 cm-1 indicating the metal ion bonding in the C=O group of esters. The DR-UVis analysis of TiO2/metal-chlorophyll shows a bathochromic shift towards the visible light region. By using the Tauc plot method, it was observed that the Egap of TiO2 reduces from 3.08 eV to 2.89 eV and 2.93 eV in the compound of TiO2/Cu2+-Chl and TiO2/Fe3+-Chl, respectively.
topic chlorophyll
cu2+-chlorophyll complex
fe3+-chlorophyll complex
tauc plot method
bandgap energy
url https://ejournal.undip.ac.id/index.php/ksa/article/view/37169
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AT titinanitazaharah bandgapenergyoftio2mchlorophyllmaterialmcu2fe3
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