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Sensing materials developed and applied for bio-active Fe3+ recognition in water environment

机译:研发并在水环境中用于生物活性Fe3 +识别的传感材料

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Iron is widely distributed in natural water, vegetables, fruits, crops and animals. It is an important physiological element and plays a crucial role in many biochemical processes at the cellular level. However, too much or too little iron intake leads to detrimental results. Great efforts have been devoted for qualitative or quantitative Fe3+ determination and various methods have been developed and applied in practice over the past few decades. To present readers with basic insights into functional sensing materials and help to further construct new materials, in this feature article, we will highlight the main sensing materials/techniques developed, including fluorescence, colorimetry, atomic absorption, chromatography, electrochemistry, flow injection, and luminescent sensing materials for Fe3+ detection, and our own work in this area in recent years.
机译:铁广泛分布于天然水,蔬菜,水果,农作物和动物中。它是重要的生理元素,在细胞水平的许多生化过程中起着至关重要的作用。但是,铁摄入过多或过少都会导致有害的结果。在过去的几十年中,人们一直致力于定性或定量的Fe3 +测定,并且已经开发出各种方法并将其应用于实践中。为了向读者展示功能感测材料的基本见解并帮助进一步构建新材料,在这篇专题文章中,我们将重点介绍开发的主要感测材料/技术,包括荧光,比色法,原子吸收,色谱法,电化学,流动注射和用于Fe3 +检测的发光传感材料,以及我们近年来在这一领域的工作。

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