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Detection and analysis of cobalt in continuous flow using an analytical microsystem based on LTCC technology

Olga Natalia Bustos López, Hesner Coto Fuentes

2015escobaltanalysismicrosystemLTCCcontinuous flow

Abstract

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This study presents a novel approach for the detection and analysis of cobalt using a continuous flow system based on low-temperature cofired ceramics (LTCC) technology. The objective was to develop a colorimetric method that efficiently measures cobalt concentrations within microliter sample volumes. Methodology involved adapting traditional discontinuous detection techniques to a continuous flow framework, utilizing an optical detection system integrated into an LTCC platform. Results indicated that the analytical signal produced was linear and conformed to Beer’s law, demonstrating the method's reliability and precision for cobalt detection. This innovative microsystem not only minimized the required volume of reagents and samples but also improved analytical performance, making it a significant advancement in the field of analytical chemistry. The findings highlight the potential for further applications of LTCC technology in environmental monitoring and other analytical tasks.

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Cite This Work

@article{f1dbeda4-10d7-4dc3-9450-7872b997e4bc,
  title={Detection and analysis of cobalt in continuous flow using an analytical microsystem based on LTCC technology},
  author={Olga Natalia Bustos López and Hesner Coto Fuentes},
  year={2015},
  language={es}
}
TY  - JOUR
TI  - Detection and analysis of cobalt in continuous flow using an analytical microsystem based on LTCC technology
AU  - Olga Natalia Bustos López
AU  - Hesner Coto Fuentes
PY  - 2015
LA  - es
ER  -

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