In-Situ Ionic Imprinted Membrane (IIM) Synthesis Based on Acetic Polyeugenoxy Acetyl Tiophen Methanolate for Gold(III) Metal Ion Transports

In this research, Polyeugenoxy Acetyl Tiophen Methanolate (PEATM)-Au ionic imprinted membrane (IIM) was synthesized. IIM is a PEATM based membrane that has Au(III) ion molds. The PEATM synthesis was analyzed using FTIR spectroscopy, and its relative molecular weight was determined by the viscometry...

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Autores principales: Muhammad Cholid Djunaidi, Pardoyo Pardoyo, Didik Setiyo Widodo, Retno Ariadi Lusiana, Anggun Yuliani
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Publicado: Department of Chemistry, Universitas Gadjah Mada 2020
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spelling oai:doaj.org-article:35bb7ddc53104231bd3136014e24a0032021-12-02T16:11:23ZIn-Situ Ionic Imprinted Membrane (IIM) Synthesis Based on Acetic Polyeugenoxy Acetyl Tiophen Methanolate for Gold(III) Metal Ion Transports1411-94202460-157810.22146/ijc.49941https://doaj.org/article/35bb7ddc53104231bd3136014e24a0032020-04-01T00:00:00Zhttps://jurnal.ugm.ac.id/ijc/article/view/49941https://doaj.org/toc/1411-9420https://doaj.org/toc/2460-1578In this research, Polyeugenoxy Acetyl Tiophen Methanolate (PEATM)-Au ionic imprinted membrane (IIM) was synthesized. IIM is a PEATM based membrane that has Au(III) ion molds. The PEATM synthesis was analyzed using FTIR spectroscopy, and its relative molecular weight was determined by the viscometry method. To find out the presence of Au(III) templates on IIM, FTIR spectroscopy and SEM-EDX were used. The results of FTIR spectroscopy & SEM-EDX analysis prove the existence of Au(III) metal ion templates at IIM. Through FTIR spectra, it could be seen that the absorption area of the -OH group was widening. In the IIM, the CS group wave number (702.9 cm–1) also shifted to a larger wavenumber (848.68 cm–1), this is likely due to the presence of PEGDE as a crosslinker agent and PVA as a plasticizer on the membrane that interacts with PEATM-Au, which influences the shift of vibrational wavenumber of CS bonds. It was also found that the most effective pH of the feed phase for the transport was at pH 3, and the most optimum transport time was 24 h for IIM and 48 h for NIM. The transport of Au in binary mixture of Au/Cd, Au/Fe, and Au/Pb also proves that the presence of Au(III) ions in IIM makes IIM more selective to Au(III) metal ions than NIM when used for the transport process as it transports Au more than the other metals. These results were as expected by using the HSAB theory as its groundwork.Muhammad Cholid DjunaidiPardoyo PardoyoDidik Setiyo WidodoRetno Ariadi LusianaAnggun YulianiDepartment of Chemistry, Universitas Gadjah Madaarticleionic imprinted membranegold metal iontransportselectivitybinary metal ionsChemistryQD1-999ENIndonesian Journal of Chemistry, Vol 20, Iss 6, Pp 1323-1331 (2020)
institution DOAJ
collection DOAJ
language EN
topic ionic imprinted membrane
gold metal ion
transport
selectivity
binary metal ions
Chemistry
QD1-999
spellingShingle ionic imprinted membrane
gold metal ion
transport
selectivity
binary metal ions
Chemistry
QD1-999
Muhammad Cholid Djunaidi
Pardoyo Pardoyo
Didik Setiyo Widodo
Retno Ariadi Lusiana
Anggun Yuliani
In-Situ Ionic Imprinted Membrane (IIM) Synthesis Based on Acetic Polyeugenoxy Acetyl Tiophen Methanolate for Gold(III) Metal Ion Transports
description In this research, Polyeugenoxy Acetyl Tiophen Methanolate (PEATM)-Au ionic imprinted membrane (IIM) was synthesized. IIM is a PEATM based membrane that has Au(III) ion molds. The PEATM synthesis was analyzed using FTIR spectroscopy, and its relative molecular weight was determined by the viscometry method. To find out the presence of Au(III) templates on IIM, FTIR spectroscopy and SEM-EDX were used. The results of FTIR spectroscopy & SEM-EDX analysis prove the existence of Au(III) metal ion templates at IIM. Through FTIR spectra, it could be seen that the absorption area of the -OH group was widening. In the IIM, the CS group wave number (702.9 cm–1) also shifted to a larger wavenumber (848.68 cm–1), this is likely due to the presence of PEGDE as a crosslinker agent and PVA as a plasticizer on the membrane that interacts with PEATM-Au, which influences the shift of vibrational wavenumber of CS bonds. It was also found that the most effective pH of the feed phase for the transport was at pH 3, and the most optimum transport time was 24 h for IIM and 48 h for NIM. The transport of Au in binary mixture of Au/Cd, Au/Fe, and Au/Pb also proves that the presence of Au(III) ions in IIM makes IIM more selective to Au(III) metal ions than NIM when used for the transport process as it transports Au more than the other metals. These results were as expected by using the HSAB theory as its groundwork.
format article
author Muhammad Cholid Djunaidi
Pardoyo Pardoyo
Didik Setiyo Widodo
Retno Ariadi Lusiana
Anggun Yuliani
author_facet Muhammad Cholid Djunaidi
Pardoyo Pardoyo
Didik Setiyo Widodo
Retno Ariadi Lusiana
Anggun Yuliani
author_sort Muhammad Cholid Djunaidi
title In-Situ Ionic Imprinted Membrane (IIM) Synthesis Based on Acetic Polyeugenoxy Acetyl Tiophen Methanolate for Gold(III) Metal Ion Transports
title_short In-Situ Ionic Imprinted Membrane (IIM) Synthesis Based on Acetic Polyeugenoxy Acetyl Tiophen Methanolate for Gold(III) Metal Ion Transports
title_full In-Situ Ionic Imprinted Membrane (IIM) Synthesis Based on Acetic Polyeugenoxy Acetyl Tiophen Methanolate for Gold(III) Metal Ion Transports
title_fullStr In-Situ Ionic Imprinted Membrane (IIM) Synthesis Based on Acetic Polyeugenoxy Acetyl Tiophen Methanolate for Gold(III) Metal Ion Transports
title_full_unstemmed In-Situ Ionic Imprinted Membrane (IIM) Synthesis Based on Acetic Polyeugenoxy Acetyl Tiophen Methanolate for Gold(III) Metal Ion Transports
title_sort in-situ ionic imprinted membrane (iim) synthesis based on acetic polyeugenoxy acetyl tiophen methanolate for gold(iii) metal ion transports
publisher Department of Chemistry, Universitas Gadjah Mada
publishDate 2020
url https://doaj.org/article/35bb7ddc53104231bd3136014e24a003
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AT pardoyopardoyo insituionicimprintedmembraneiimsynthesisbasedonaceticpolyeugenoxyacetyltiophenmethanolateforgoldiiimetaliontransports
AT didiksetiyowidodo insituionicimprintedmembraneiimsynthesisbasedonaceticpolyeugenoxyacetyltiophenmethanolateforgoldiiimetaliontransports
AT retnoariadilusiana insituionicimprintedmembraneiimsynthesisbasedonaceticpolyeugenoxyacetyltiophenmethanolateforgoldiiimetaliontransports
AT anggunyuliani insituionicimprintedmembraneiimsynthesisbasedonaceticpolyeugenoxyacetyltiophenmethanolateforgoldiiimetaliontransports
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