Li Baini, Wang Tianran, Su Qingqing, Wu Xuezhong, Dong Peitao
College of Intelligence Science and Technology, National University of Defense Technology, Changsha 410073, China.
Sensors (Basel). 2019 Aug 29;19(17):3742. doi: 10.3390/s19173742.
Oblique angle deposition (OAD) is a simple, low cost, effective, and maskless nanofabrication process. It can offer a reliable method for the mass fabrication of uniform metal nanorods which can be used as the surface-enhanced Raman scattering (SERS) substrate with an excellent enhancing performance. Up to now, Ag nanorods SERS substrates have been extensively studied. However, Ag is chemically active and easy to oxidize under atmospheric conditions. Comparatively, Au is chemically stable and has better biocompatibility than Ag. In this paper, we in detail, studied the electromechanical (EM) field distribution simulation, fabrication, and application of Au nanorods (AuNRs) on trace detection of methamphetamine. According to the finite-difference time-domain (FDTD) calculation results, the maximum EM intensity can be obtained with the length of AuNRs to be 800 nm and the tilting angle of AuNRs to be 71° respectively. The aligned Au nanorod array substrate was fabricated by the OAD process. The two key process parameters, deposition angle, and deposition rate were optimized by experiments, which were 86° and 2 Å/s, respectively. Using 1,2-bis (4-pyridyl) ethylene (BPE) as the probe molecule, the limit of detection (LOD) was characterized to be 10 M. The AuNRs were also used to detect methamphetamine. The LOD can be down to M (i.e., 14.92 pg/ml), which meet the requirements of the on-site rapid detection of the methamphetamine in human urine (500 ng/ml).
倾斜角沉积(OAD)是一种简单、低成本、高效且无掩膜的纳米制造工艺。它能为大规模制造均匀的金属纳米棒提供一种可靠方法,这些纳米棒可用作具有优异增强性能的表面增强拉曼散射(SERS)基底。到目前为止,银纳米棒SERS基底已得到广泛研究。然而,银具有化学活性,在大气条件下容易氧化。相比之下,金化学性质稳定,且比银具有更好的生物相容性。在本文中,我们详细研究了金纳米棒(AuNRs)的电磁场分布模拟、制备及其在甲基苯丙胺痕量检测中的应用。根据时域有限差分(FDTD)计算结果,当金纳米棒长度为800 nm且倾斜角为71°时,可获得最大电磁场强度。通过OAD工艺制备了排列整齐的金纳米棒阵列基底。通过实验优化了两个关键工艺参数,沉积角和沉积速率,分别为86°和2 Å/s。以1,2-双(4-吡啶基)乙烯(BPE)作为探针分子,检测限(LOD)为10⁻⁶ M。金纳米棒还用于检测甲基苯丙胺。检测限可低至10⁻¹² M(即14.92 pg/ml),满足人体尿液中甲基苯丙胺现场快速检测(500 ng/ml)的要求。