Pan Xiao-hui, Zhang Qin, Guo Wei, Chen Fa-he
Guang Pu Xue Yu Guang Pu Fen Xi. 2015 Jun;35(6):1556-61.
The large-scale controllable, ordered two-dimensional arrays of gold nanostructure with hot-spot were prepared together with chemical molecules were modified on the surface to concentrate Sudan I within the zone of the SERS effect, which lead to analytical detection of Sudan I in high resolution. The vapor of gold was deposed on anodic aluminum oxide(AAO) template by -200 nm thickness to replicate its nanochannels, and the negative structure i. e. large-scale ordered gold nano-hemisphere array, was obtained after the removal of the template of AAO by NaOH solution. Au nano-hemisphere array was modified by 1-Dodecanethiol which can be self-assembled monolayer on the surface and concentrate Sudan I within the zone of the SERS detection, which can facilitate the measurement of Sudan I. Due to the order and regularity of Au nano-hemisphere array, the signal of Sudan I in the range of laser illumination is stable and uniform, and the quantitative analysis of Sudan I was realized. The SERS intensity of Sudan I is logistic proportional to the concentration in the range of 10(-7) to 5 x 10(-4) mol x L(-1). The corresponding correlation coefficient of the liner equation is 0.99, the recoveries of Sudan I are between 77% - 117%. The limit of detection for Sudan I is 4 x 10(-1) mol x L(-1), comparable to that of HPLC of Chinese national standard method.
制备了具有热点的大规模可控有序二维金纳米结构阵列,并在其表面修饰化学分子,使苏丹红I富集在表面增强拉曼散射(SERS)效应区域内,从而实现对苏丹红I的高分辨率分析检测。通过在阳极氧化铝(AAO)模板上蒸镀厚度为-200nm的金来复制其纳米通道,用氢氧化钠溶液去除AAO模板后得到负性结构,即大规模有序金纳米半球阵列。用1-十二烷硫醇修饰金纳米半球阵列,其可在表面形成自组装单分子层,使苏丹红I富集在SERS检测区域内,便于对苏丹红I进行测量。由于金纳米半球阵列的有序性和规则性,在激光照射范围内苏丹红I的信号稳定且均匀,实现了对苏丹红I的定量分析。苏丹红I的SERS强度在10^(-7)至5×10^(-4)mol·L^(-1)范围内与浓度呈逻辑比例关系。线性方程的相应相关系数为0.99,苏丹红I的回收率在77% - 117%之间。苏丹红I的检测限为4×10^(-1)mol·L^(-1),与中国国家标准方法中的高效液相色谱法相当。