{"id":{"repo_id":"cork","oai_identifier":"oai:cora.ucc.ie:10468/9917"},"canonical_url":"https://search.dev.ndltd.org/etd/cork/oai:cora.ucc.ie:10468/9917","repository":{"repo_id":"cork","name":"University College Cork","base_url":"https://cora.ucc.ie/server/oai/request"},"display":{"title":"Development of a portable miniaturised capillary electrophoresis system for chemical nerve agents detection","abstract":"The objective of this research is to provide a complete solution to analysis suspected chemical agents accurately and rapidly at a forensic site. In order to reduce the consumed time of sending the sample to the forensic lab, this research aim to provide the real-time data for mobile forensic analysis. The system is ideally portable and operates on-site of the crime scene. This research work discussed the compatibility between CE (Capillary electrophoresis) and C4D (Capacitively-Coupled Contactless Conductivity Detection) technology applied on a miniaturised microfluidic chip device. The comparison of the practicability of micro-device analysis between high-cost but sophisticated micro/nanofabricated silicon microchip device and with low-cost but disposal polymer microchip. This project output is an integrated chemistry workstation system for mobile on-site analysing tasks. All the thesis research belongs to the sub-work-package of the EU (European Union) FP-7 GIFT.","abstract_html":"The objective of this research is to provide a complete solution to analysis suspected chemical agents accurately and rapidly at a forensic site. In order to reduce the consumed time of sending the sample to the forensic lab, this research aim to provide the real-time data for mobile forensic analysis. The system is ideally portable and operates on-site of the crime scene. This research work discussed the compatibility between CE (Capillary electrophoresis) and C4D (Capacitively-Coupled Contactless Conductivity Detection) technology applied on a miniaturised microfluidic chip device. The comparison of the practicability of micro-device analysis between high-cost but sophisticated micro/nanofabricated silicon microchip device and with low-cost but disposal polymer microchip. This project output is an integrated chemistry workstation system for mobile on-site analysing tasks. 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All the thesis research belongs to the sub-work-package of the EU (European Union) FP-7 GIFT."]},{"key":"dc:format.mimetype","label":"Dc Format Mimetype","values":["application/pdf"]},{"key":"dc:title","label":"Title","values":["Development of a portable miniaturised capillary electrophoresis system for chemical nerve agents detection"]}]}],"canonical_facts":{"dc:contributor.advisor":["Moore, Eric J."],"dc:creator":["Wang, Yineng"],"dc:date.accessioned":["2020-05-12T09:25:11Z"],"dc:date.available":["2020-05-12T09:25:11Z"],"dc:date.issued":["2019-07"],"dc:description.abstract":["The objective of this research is to provide a complete solution to analysis suspected chemical agents accurately and rapidly at a forensic site. In order to reduce the consumed time of sending the sample to the forensic lab, this research aim to provide the real-time data for mobile forensic analysis. The system is ideally portable and operates on-site of the crime scene. This research work discussed the compatibility between CE (Capillary electrophoresis) and C4D (Capacitively-Coupled Contactless Conductivity Detection) technology applied on a miniaturised microfluidic chip device. The comparison of the practicability of micro-device analysis between high-cost but sophisticated micro/nanofabricated silicon microchip device and with low-cost but disposal polymer microchip. This project output is an integrated chemistry workstation system for mobile on-site analysing tasks. 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