School of Chemistry, College of Science, University of Tehran, Tehran, 1417414418, Iran.
Chemistry and Chemical Engineering Research Center of Iran, Tehran, 1496813151, Iran.
Mikrochim Acta. 2020 Jan 2;187(1):81. doi: 10.1007/s00604-019-4067-4.
"Tryptophan-coated blue fluorescent copper nanocluster (CuNC@Trp) was prepared by a strategy where Trp acts as both the reducing and capping agent. The fluorescence of the CuNC, with excitation/emission peaks at 340/405 nm, is selectively quenched by iron(II) and iron(III) ions. Studying the mechanism of this interaction revealed that Fe and Fe ions can make a ground state complex with the protecting ligand which can result in quenching of the cluster emission. Structural and optical properties of the modified CuNC were investigated by ESI-MS, DLS, TEM, UV-vis and photoluminescence. The effects of pH value and temperature, time of interaction, and cluster volume were optimized. Under optimized conditions, the probe response is linear in concentration range of 10-1000 μM for Fe(II) and Fe(III) with the relative standard deviations of 0.13 and 0.14% (n = 5) respectively. The respective limits of detection are 3.0 and 2.2 μM. The method was successfully used for determination of trace amount of both ions in spiked water, blood and iron supplement tablets. The results were in good agreement with those obtained by the ICP-AES method." Graphical abstractThe scheme represents the synthesis of CuNC@Trp at basic conditions and at elevated temperature. The emission of the cluster decreases due to static quenching of fluorescence by iron ions.
色氨酸包覆的蓝色荧光铜纳米簇(CuNC@Trp)通过一种策略制备,其中色氨酸既作为还原剂又作为封端剂。CuNC 的荧光具有 340/405nm 的激发/发射峰,可被铁(II)和铁(III)离子选择性猝灭。研究这种相互作用的机制表明,Fe 和 Fe 离子可以与保护配体形成基态配合物,从而导致簇发射猝灭。通过 ESI-MS、DLS、TEM、UV-vis 和光致发光研究了修饰后的 CuNC 的结构和光学性质。优化了 pH 值和温度、相互作用时间和簇体积等条件。在优化条件下,探针对 Fe(II)和 Fe(III)的浓度范围在 10-1000 μM 内呈线性响应,相对标准偏差分别为 0.13%和 0.14%(n = 5)。各自的检测限分别为 3.0 和 2.2 μM。该方法成功用于测定加标水样、血液和铁补充片剂中痕量的这两种离子。结果与 ICP-AES 法的结果吻合良好。
该方案代表了在碱性条件下和高温下合成 CuNC@Trp。由于铁离子的静态荧光猝灭,簇的发射减少。