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Colorimetric and visual determination of uric acid based on decolorization of manganese dioxide nanosheet dispersions. | LitMetric

Colorimetric and visual determination of uric acid based on decolorization of manganese dioxide nanosheet dispersions.

Mikrochim Acta

MOE Key Laboratory for Analytical Science of Food Safety and Biology, Fujian Provincial Key Laboratory of Analysis and Detection Technology for Food Safety, College of Chemistry, Fuzhou University, Fuzhou, China.

Published: May 2023

AI Article Synopsis

  • Uric acid (UA) is crucial for disease prevention, and there's a need for quick and accurate detection methods.
  • Researchers have created manganese dioxide nanosheets (MnONSs) that change color in response to UA, allowing for an enzyme-free colorimetric sensing system.
  • The detection system is highly sensitive (with limits down to 0.047 μmol/L), has a wide range (0.10-50.0 μmol/L), and has been successfully tested on human serum and urine samples.

Article Abstract

Serum levels of uric acid (UA) play an important role in the prevention of diseases. Developing a rapid and accurate way to detect UA is still a meaningful task. Hence, positively charged manganese dioxide nanosheets (MnONSs) with an average latter size of 100 nm and an ultra-thin thickness of below 1 nm have been prepared. They can be well dispersed in water and form stable yellow-brown solutions. The MnONSs can be decomposed by UA via redox reaction, leading to a decline of a characteristic absorption peak (374 nm) and a color fading of MnONSs solution. On this basis, an enzyme-free colorimetric sensing system for the detection of UA has been developed. The sensing system shows many advantages, including a wide linear range of 0.10-50.0 μmol/L, a limit of quantitation (LOQ) of 0.10 μmol/L, a low limit of detection (LOD) of 0.047 μmol/L (3σ/m), and rapid response without need of strict time control. Moreover, a simple and convenient visual sensor for UA detection has also been developed by adding an appropriate amount of phthalocyanine to provide a blue background color, which helps to increase visual discrimination. Finally, the strategy has been successfully applied to detect UA in human serum and urine samples.

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Source
http://dx.doi.org/10.1007/s00604-023-05767-2DOI Listing

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