Array-based detection of persistent organic pollutants via cyclodextrin promoted energy transferElectronic supplementary information (ESI) available: Synthesis of fluorophore 31, detailed procedures for array detection, unknown classifications experiments, all control experiments, graphs and images of all LDA results and all JCA results. See DOI: 10.1039/c5cc04153h
We report herein the selective array-based detection of 30 persistent organic pollutants via cyclodextrin-promoted energy transfer. The use of three fluorophores enabled the development of an array that classified 30 analytes with 100% accuracy and identified unknown analytes with 96% accuracy, as w...
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creator | Serio, Nicole Moyano, Daniel F Rotello, Vincent M Levine, Mindy |
description | We report herein the selective array-based detection of 30 persistent organic pollutants
via
cyclodextrin-promoted energy transfer. The use of three fluorophores enabled the development of an array that classified 30 analytes with 100% accuracy and identified unknown analytes with 96% accuracy, as well as identifying 92% of analytes in urine.
Reported herein is the selective detection of 30 different persistent organic pollutants using cyclodextrin-promoted non-covalent energy transfer for array-based detection. |
doi_str_mv | 10.1039/c5cc04153h |
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via
cyclodextrin-promoted energy transfer. The use of three fluorophores enabled the development of an array that classified 30 analytes with 100% accuracy and identified unknown analytes with 96% accuracy, as well as identifying 92% of analytes in urine.
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via
cyclodextrin-promoted energy transfer. The use of three fluorophores enabled the development of an array that classified 30 analytes with 100% accuracy and identified unknown analytes with 96% accuracy, as well as identifying 92% of analytes in urine.
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via
cyclodextrin-promoted energy transfer. The use of three fluorophores enabled the development of an array that classified 30 analytes with 100% accuracy and identified unknown analytes with 96% accuracy, as well as identifying 92% of analytes in urine.
Reported herein is the selective detection of 30 different persistent organic pollutants using cyclodextrin-promoted non-covalent energy transfer for array-based detection.</abstract><doi>10.1039/c5cc04153h</doi><tpages>4</tpages></addata></record> |
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title | Array-based detection of persistent organic pollutants via cyclodextrin promoted energy transferElectronic supplementary information (ESI) available: Synthesis of fluorophore 31, detailed procedures for array detection, unknown classifications experiments, all control experiments, graphs and images of all LDA results and all JCA results. See DOI: 10.1039/c5cc04153h |
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