Lu Han, Han Gengxin, Cao Jieping, Jin Mingliang, Ma Qilin, Akinoglu Eser Metin, Wang Xin, Nian Li, Zhou Guofu, Shui Lingling
Guangdong Provincial Key Laboratory of Optical Information Materials and Technology, South China Academy of Advanced Optoelectronics, South China Normal University, Guangzhou, 510006, China.
International Academy of Optoelectronics at Zhaoqing, South China Normal University, Zhaoqing, 526238, China.
Nanoscale Res Lett. 2020 Jan 13;15(1):8. doi: 10.1186/s11671-019-3239-9.
Fabrication of large-area devices with patternable nanostructures is important for practical applications in optical or electrical devices. In this work, we describe an easy and environment-friendly method for preparing large-area nano-dot (ND) arrays via the electrolytic reaction of a metal oxide film. NDs with various size and morphology can be obtained by adjusting the applied voltage, electrolysis time, and the film thickness of the indium tin oxide (ITO) layer. High-density NDs with size of 50-60 nm can be obtained by electrolysis of a 25-nm-thick ITO film at 150 V for 1.5 min under a water droplet medium, which have been applied for surface-enhanced Raman spectroscopy (SERS) after depositing a thin layer of silver. The SERS substrate with optimized ND structure exhibits sensitive detection of Rhodamine 6G (R6G) with detection limit down to 5 × 10 M. The enhancement factors (EFs) of 1.12 × 10 and 6.79 × 10 have been achieved for characterization of 4-methylbenzenethiol (4-MBT) and R6G, respectively. With an additional photolithographic step, multiple areas of ND arrays can be created on one substrate, enabling simultaneous detection of various samples containing different molecules at once experiment. Such a method is quick, easy, patternable, and environment-friendly, being suitable for on-site quick and synchronous determination of various molecules for applications in point-of-care, environmental monitoring, and airport security fields.
制造具有可图案化纳米结构的大面积器件对于光学或电气设备的实际应用至关重要。在这项工作中,我们描述了一种通过金属氧化物膜的电解反应制备大面积纳米点(ND)阵列的简便且环保的方法。通过调整施加电压、电解时间和氧化铟锡(ITO)层的膜厚度,可以获得具有各种尺寸和形态的纳米点。在水滴介质下,对25纳米厚的ITO膜在150伏电压下电解1.5分钟,可获得尺寸为50 - 60纳米的高密度纳米点,在沉积一层薄银后已应用于表面增强拉曼光谱(SERS)。具有优化纳米点结构的SERS基底对罗丹明6G(R6G)表现出灵敏检测,检测限低至5×10⁻⁸ M。对于4 - 甲基苯硫酚(4 - MBT)和R6G的表征,分别实现了1.12×10⁶和6.79×10⁶的增强因子(EFs)。通过额外的光刻步骤,可以在一个基底上创建多个纳米点阵列区域,从而能够在一次实验中同时检测包含不同分子的各种样品。这种方法快速、简便、可图案化且环保,适用于即时检测、环境监测和机场安检领域中各种分子的现场快速同步测定。