Electrochemistry and Optical Spectroscopy Research Unit, Department of Chemistry, Faculty of Science, Chulalongkorn University, 254 Phayathai Road, Pathumwan, Bangkok 10330, Thailand.
Department of Chemistry, Faculty of Science, Srinakharinwirot University, Sukhumvit 23, Wattanna, Bangkok 10110, Thailand.
Anal Chim Acta. 2015 Mar 25;866:75-83. doi: 10.1016/j.aca.2015.01.042. Epub 2015 Jan 30.
A novel, highly selective and sensitive paper-based colorimetric sensor for trace determination of copper (Cu(2+)) ions was developed. The measurement is based on the catalytic etching of silver nanoplates (AgNPls) by thiosulfate (S2O3(2-)). Upon the addition of Cu(2+) to the ammonium buffer at pH 11, the absorption peak intensity of AuNPls/S2O3(2-) at 522 nm decreased and the pinkish violet AuNPls became clear in color as visible to the naked eye. This assay provides highly sensitive and selective detection of Cu(2+) over other metal ions (K(+), Cr(3+), Cd(2+), Zn(2+), As(3+), Mn(2+), Co(2+), Pb(2+), Al(3+), Ni(2+), Fe(3+), Mg(2+), Hg(2+) and Bi(3+)). A paper-based colorimetric sensor was then developed for the simple and rapid determination of Cu(2+) using the catalytic etching of AgNPls. Under optimized conditions, the modified AgNPls coated at the test zone of the devices immediately changes in color in the presence of Cu(2+). The limit of detection (LOD) was found to be 1.0 ng mL(-1) by visual detection. For semi-quantitative measurement with image processing, the method detected Cu(2+) in the range of 0.5-200 ng mL(-1)(R(2)=0.9974) with an LOD of 0.3 ng mL(-1). The proposed method was successfully applied to detect Cu(2+) in the wide range of real samples including water, food, and blood. The results were in good agreement according to a paired t-test with results from inductively coupled plasma-optical emission spectrometry (ICP-OES).
一种用于痕量测定铜(Cu(2+))离子的新型、高选择性和高灵敏度的纸基比色传感器被开发出来。该测量是基于硫代硫酸盐(S2O3(2-))对银纳米片(AgNPls)的催化蚀刻。当 Cu(2+)加入到 pH 11 的氨缓冲液中时,AuNPls/S2O3(2-)在 522nm 处的吸收峰强度降低,粉红色的 AuNPls 肉眼可见变为清晰的颜色。该方法对 Cu(2+)的检测具有高度的灵敏性和选择性,优于其他金属离子(K(+)、Cr(3+)、Cd(2+)、Zn(2+)、As(3+)、Mn(2+)、Co(2+)、Pb(2+)、Al(3+)、Ni(2+)、Fe(3+)、Mg(2+)、Hg(2+)和 Bi(3+))。然后,我们使用银纳米片的催化蚀刻开发了一种基于纸的比色传感器,用于简单快速地测定 Cu(2+)。在优化条件下,在存在 Cu(2+)的情况下,修饰的 AgNPls 立即在器件的测试区域改变颜色。通过目视检测发现,该方法的检测限(LOD)为 1.0ng mL(-1)。对于使用图像处理的半定量测量,该方法在 0.5-200ng mL(-1)(R(2)=0.9974)范围内检测 Cu(2+),LOD 为 0.3ng mL(-1)。该方法成功地应用于检测包括水、食品和血液在内的各种实际样品中的 Cu(2+)。根据与电感耦合等离子体-光发射光谱法(ICP-OES)的结果进行的配对 t 检验,结果吻合良好。