Cellulose-modified carbon electrode for in situ lead detection
Increasing contamination of water by trace levels of heavy metals has become major environmental threats leading to an increased demand for the detection and monitoring of metal contaminants. In this work, modification of carbon electrode with cellulose was reported to enhance Pb2+ detection. The in...
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2014
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my.utp.eprints.318832022-03-29T03:39:14Z Cellulose-modified carbon electrode for in situ lead detection Almustapha, S. Ali Khan, A.A. Omar, A.A. Ariwahjoedi, B. Abdullah, M.A. Increasing contamination of water by trace levels of heavy metals has become major environmental threats leading to an increased demand for the detection and monitoring of metal contaminants. In this work, modification of carbon electrode with cellulose was reported to enhance Pb2+ detection. The interacting ability of cellulose on the electrode surface was evaluated for Pb2+ by using square wave anodic stripping voltammetry. The deposition potential of �1.0 V in 0.1M acetate buffer for 240 sec, followed by square wave potential scan from -1.0 V to -0.2V were used. Stripping voltammogram showed current peaks corresponding to Pb2+. The sensitivity and selectivity of the modified electrodes for Pb2+ were also determined. © 2014 Trans Tech Publications, Switzerland. Trans Tech Publications Ltd 2014 Article NonPeerReviewed https://www.scopus.com/inward/record.uri?eid=2-s2.0-84914166872&doi=10.4028%2fwww.scientific.net%2fAMM.625.136&partnerID=40&md5=9d8d7ff4b6cfc606ba986e18c738ff55 Almustapha, S. and Ali Khan, A.A. and Omar, A.A. and Ariwahjoedi, B. and Abdullah, M.A. (2014) Cellulose-modified carbon electrode for in situ lead detection. Applied Mechanics and Materials, 625 . pp. 136-139. http://eprints.utp.edu.my/31883/ |
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Increasing contamination of water by trace levels of heavy metals has become major environmental threats leading to an increased demand for the detection and monitoring of metal contaminants. In this work, modification of carbon electrode with cellulose was reported to enhance Pb2+ detection. The interacting ability of cellulose on the electrode surface was evaluated for Pb2+ by using square wave anodic stripping voltammetry. The deposition potential of �1.0 V in 0.1M acetate buffer for 240 sec, followed by square wave potential scan from -1.0 V to -0.2V were used. Stripping voltammogram showed current peaks corresponding to Pb2+. The sensitivity and selectivity of the modified electrodes for Pb2+ were also determined. © 2014 Trans Tech Publications, Switzerland. |
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Article |
author |
Almustapha, S. Ali Khan, A.A. Omar, A.A. Ariwahjoedi, B. Abdullah, M.A. |
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Almustapha, S. Ali Khan, A.A. Omar, A.A. Ariwahjoedi, B. Abdullah, M.A. Cellulose-modified carbon electrode for in situ lead detection |
author_facet |
Almustapha, S. Ali Khan, A.A. Omar, A.A. Ariwahjoedi, B. Abdullah, M.A. |
author_sort |
Almustapha, S. |
title |
Cellulose-modified carbon electrode for in situ lead detection |
title_short |
Cellulose-modified carbon electrode for in situ lead detection |
title_full |
Cellulose-modified carbon electrode for in situ lead detection |
title_fullStr |
Cellulose-modified carbon electrode for in situ lead detection |
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Cellulose-modified carbon electrode for in situ lead detection |
title_sort |
cellulose-modified carbon electrode for in situ lead detection |
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Trans Tech Publications Ltd |
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2014 |
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https://www.scopus.com/inward/record.uri?eid=2-s2.0-84914166872&doi=10.4028%2fwww.scientific.net%2fAMM.625.136&partnerID=40&md5=9d8d7ff4b6cfc606ba986e18c738ff55 http://eprints.utp.edu.my/31883/ |
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