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The preparation of high-quality water-soluble silicon quantum dots and their application in the detection of formaldehyde

机译:制备高质量的水溶性硅量子点及其在甲醛检测中的应用

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This paper reports the synthesis of water-soluble fluorescence silicon quantum dots (Si QDs) through a hydrothermal route with urea propyl triethoxysilane (UPTES) as the source of silicon and sodium citrate as the deoxidizer. The UPTES was for the first time reported as the source of silicon. The preparation process is simple and green, and the prepared Si QDs exhibit high quantum yields, which would be ideal as a low-toxic material in biochemical applications. In addition, the prepared QDs emit excellent and stable fluorescence in a wide range of pH values (2–14), and show strong tolerance to salt and several common organic reagents, overcoming the weak anti-interference ability of traditional QDs and thus ensuring them as satisfactory candidates for biochemical detection. Using the prepared QDs as fluorescence probes, formaldehyde has been successfully detected in aqueous phase and acetonitrile through an electron transfer mechanism. The detection method is simple, sensitive and strongly anti-interfering, providing a new way for detecting formaldehyde in different solvents and expanding the potential applications of water-soluble low-toxic QDs in biochemical detection.
机译:本文通过用尿素丙基三乙氧基硅烷(升级)作为硅和柠檬酸钠作为脱氧剂的氧化硅烷来报告水溶性荧光硅量子点(SiQDS)的合成。最初的是第一次报告为硅来源。制备过程简单且绿色,制备的SiQD表现出高量子产率,其是生物化学应用中的低毒性材料。此外,制备的QD在宽范围的pH值(2-14)中发出优异且稳定的荧光,并显示出对盐和几种常见有机试剂的强耐受性,克服了传统QD的弱抗干扰能力,从而确保了它们作为生化检测的令人满意的候选人。使用制备的QD作为荧光探针,通过电子转移机构在水相和乙腈中成功地检测甲醛。检测方法简单,敏感,强烈抗干扰,提供了一种用于检测不同溶剂中甲醛的新方法,并扩大水溶性低毒性QD在生化检测中的潜在应用。

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