2021NanotechnologyRequires access

Sensitive detection of picric acid in an aqueous solution using fluorescent nonconjugated polymer dots as fluorescent probes

Jinshui Liu, Ting Fu, Chenfu Liu, Fangfei Wu, Huaxin Wang

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Abstract

Abstract Nonconjugated polymer dots (NPDs) were successfully used as fluorescent probes to selectively and sensitively detect picric acid (PA). The NPDs were prepared from polyethylenimine and 1,4-phthalaldehyde under mild conditions and had excitation and emission maxima of 351 and 474 nm, respectively. Fluorescence of the NPDs was efficiently quenched by PA through the inner filter effect because of the overlapping PA absorption band and NPD excitation spectrum. The NPDs allowed PA to be determined with a high degree of sensitivity. The linear range was 0–140 μ M and the detection limit was 0.5 μ M. The work involved developing a novel method for synthesizing NPDs and a promising platform for determining PA in environmental media.

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What this paper is about

Abstract Nonconjugated polymer dots (NPDs) were successfully used as fluorescent probes to selectively and sensitively detect picric acid (PA). The NPDs were prepared from polyethylenimine and 1,4-phthalaldehyde under mild conditions and had excitation and emission maxima of 351 and 474 nm, respectively. Fluorescence of the NPDs was efficiently quenched by PA through the inner filter effect because of the overlapping PA absorption band and NPD excitation spectrum. The NPDs allowed PA to be determined with a high degree of sensitivity. The linear range was 0–140 μ M and the detection limit was 0.5 μ M. The work involved developing a novel method for synthesizing NPDs and a promising platform for determining PA in environmental media.

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Available abstract

Abstract Nonconjugated polymer dots (NPDs) were successfully used as fluorescent probes to selectively and sensitively detect picric acid (PA). The NPDs were prepared from polyethylenimine and 1,4-phthalaldehyde under mild conditions and had excitation and emission maxima of 351 and 474 nm, respectively. Fluorescence of the NPDs was efficiently quenched by PA through the inner filter effect because of the overlapping PA absorption band and NPD excitation spectrum. The NPDs allowed PA to be determined with a high degree of sensitivity. The linear range was 0–140 μ M and the detection limit was 0.5 μ M. The work involved developing a novel method for synthesizing NPDs and a promising platform for determining PA in environmental media.

Key concepts: Picric acid, Fluorescence, Detection limit, Materials science, Aqueous solution, Polyethylenimine, Absorption (acoustics), Polymer

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Sensitive detection of picric acid in an aqueous solution using fluorescent nonconjugated polymer dots as fluorescent probes — Research Paper | ScholarLens