A green microextraction technique using nanomaterials adsorbent as valuable tools for elemental speciation and pharmaceutical contaminants analysis / Nor Suhaila Mohamad Hanapi ... [et al.]
Recently, substantial great innovations in sample preparation techniques have been focused by many researchers to miniaturize analytical laboratories procedure toward green microextraction techniques. Due to the polluting nature of the conventional sample preparation techniques, micro solid-phase ex...
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my.uitm.ir.712382023-01-11T01:19:30Z https://ir.uitm.edu.my/id/eprint/71238/ A green microextraction technique using nanomaterials adsorbent as valuable tools for elemental speciation and pharmaceutical contaminants analysis / Nor Suhaila Mohamad Hanapi ... [et al.] Mohamad Hanapi, Nor Suhaila Ungku Abdullah, Ungku Amirul Arif Wan Ibrahim, Wan Nazihah Mat Hadzir, Nursyamsyila Zaini, Nurzaimah Zainal Abidin, Nur Husna Q Science (General) Plant gene isolation RZ Other systems of medicine Recently, substantial great innovations in sample preparation techniques have been focused by many researchers to miniaturize analytical laboratories procedure toward green microextraction techniques. Due to the polluting nature of the conventional sample preparation techniques, micro solid-phase extraction (μ-SPE) was developed as a greener alternative technique. This technique eliminates the lengthy workflow such as precipitation, centrifugation, and filtration which increase the sample preparation time and possible error prior to the instrumental analysis. Various nanomaterial adsorbents such as graphene, carbon nanotubes (CNTs), graphene oxide (GO), alginate graphene oxide (Alg/GO), alginate/CNTs, C18 have been developed and utilized as adsorbent in micro solid phase extraction for enhancing the extraction efficiency of elemental speciation and pharmaceutical contaminants in various matrices. Performance microextraction was evaluated by selected parameters; sample pH, ionic strength, amount of adsorbent, extraction time and desorption conditions. As a result, this technique offers simple approach, rapid analysis and economical value with superior extraction performance efficiencies with regard to sensitivity, selectivity and recovery. It could also be potentially useful for the analysis of elemental speciation and pharmaceutical contaminants analyses. 2020 Conference or Workshop Item PeerReviewed text en https://ir.uitm.edu.my/id/eprint/71238/1/71238.pdf A green microextraction technique using nanomaterials adsorbent as valuable tools for elemental speciation and pharmaceutical contaminants analysis / Nor Suhaila Mohamad Hanapi ... [et al.]. (2020) In: International Innovation, Invention and Design Competition, 17 May-10 Oct 2020. |
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Q Science (General) Plant gene isolation RZ Other systems of medicine Mohamad Hanapi, Nor Suhaila Ungku Abdullah, Ungku Amirul Arif Wan Ibrahim, Wan Nazihah Mat Hadzir, Nursyamsyila Zaini, Nurzaimah Zainal Abidin, Nur Husna A green microextraction technique using nanomaterials adsorbent as valuable tools for elemental speciation and pharmaceutical contaminants analysis / Nor Suhaila Mohamad Hanapi ... [et al.] |
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Recently, substantial great innovations in sample preparation techniques have been focused by many researchers to miniaturize analytical laboratories procedure toward green microextraction techniques. Due to the polluting nature of the conventional sample preparation techniques, micro solid-phase extraction (μ-SPE) was developed as a greener alternative technique. This technique eliminates the lengthy workflow such as precipitation, centrifugation, and filtration which increase the sample preparation time and possible error prior to the instrumental analysis. Various nanomaterial adsorbents such as graphene, carbon nanotubes (CNTs), graphene oxide (GO), alginate graphene oxide (Alg/GO), alginate/CNTs, C18 have been developed and utilized as adsorbent in micro solid phase extraction for enhancing the extraction efficiency of elemental speciation and pharmaceutical contaminants in various matrices. Performance microextraction was evaluated by selected parameters; sample pH, ionic strength, amount of adsorbent, extraction time and desorption conditions. As a result, this technique offers simple approach, rapid analysis and economical value with superior extraction performance efficiencies with regard to sensitivity, selectivity and recovery. It could also be potentially useful for the analysis of elemental speciation and pharmaceutical contaminants analyses. |
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Conference or Workshop Item |
author |
Mohamad Hanapi, Nor Suhaila Ungku Abdullah, Ungku Amirul Arif Wan Ibrahim, Wan Nazihah Mat Hadzir, Nursyamsyila Zaini, Nurzaimah Zainal Abidin, Nur Husna |
author_facet |
Mohamad Hanapi, Nor Suhaila Ungku Abdullah, Ungku Amirul Arif Wan Ibrahim, Wan Nazihah Mat Hadzir, Nursyamsyila Zaini, Nurzaimah Zainal Abidin, Nur Husna |
author_sort |
Mohamad Hanapi, Nor Suhaila |
title |
A green microextraction technique using nanomaterials adsorbent as valuable tools for elemental speciation and pharmaceutical contaminants analysis / Nor Suhaila Mohamad Hanapi ... [et al.] |
title_short |
A green microextraction technique using nanomaterials adsorbent as valuable tools for elemental speciation and pharmaceutical contaminants analysis / Nor Suhaila Mohamad Hanapi ... [et al.] |
title_full |
A green microextraction technique using nanomaterials adsorbent as valuable tools for elemental speciation and pharmaceutical contaminants analysis / Nor Suhaila Mohamad Hanapi ... [et al.] |
title_fullStr |
A green microextraction technique using nanomaterials adsorbent as valuable tools for elemental speciation and pharmaceutical contaminants analysis / Nor Suhaila Mohamad Hanapi ... [et al.] |
title_full_unstemmed |
A green microextraction technique using nanomaterials adsorbent as valuable tools for elemental speciation and pharmaceutical contaminants analysis / Nor Suhaila Mohamad Hanapi ... [et al.] |
title_sort |
green microextraction technique using nanomaterials adsorbent as valuable tools for elemental speciation and pharmaceutical contaminants analysis / nor suhaila mohamad hanapi ... [et al.] |
publishDate |
2020 |
url |
https://ir.uitm.edu.my/id/eprint/71238/1/71238.pdf https://ir.uitm.edu.my/id/eprint/71238/ |
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1755876040103690240 |
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13.211869 |