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Optical Properties of Multilayer Ordered Gold Nanodot Array Fabricated by a Thermal Dewetting Method

机译:热去湿法制备的多层有序金纳米点阵列的光学性质

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A new efficient and low-cost method to fabricate multilayer ordered nanodot array is developed. In this method, firstly, a 2D nanodot array is fabricated by combination of Nano Plastic Forming (NPF) patterning of Au layer coated on the substrate and thermal dewetting induced self-organization. Then, multilayer ordered Au nanodot array is fabricated by repeating SiO2 deposition and Au deposition followed by thermal dewetting. Feasibility of this process was verified experimentally. The absorbance spectra of the fabricated ordered Au nanodot arrays show strong localized surface plasmon resonance (LSPR) with narrow bandwidth. It is shown that the absorbance spectra of a 2D nanodot array can be tuned by controlling annealing temperature. It is also found that intensity of the absorbance spectrum increases linearly with the increase of the number of layers. This enhanced absorbance gives rise to great potential in biosensing devices.
机译:开发了一种新型高效低成本的多层有序纳米点阵列制造方法。在这种方法中,首先,通过将涂覆在基板上的金层的纳米塑料成形(NPF)图案与热去湿引起的自组织结合起来,制造二维纳米点阵列。然后,通过重复SiO 2沉积和Au沉积然后进行热脱湿来制造多层有序Au纳米点阵列。该过程的可行性已通过实验验证。所制造的有序金纳米点阵列的吸收光谱显示出具有窄带宽的强局部表面等离子体共振(LSPR)。结果表明,可以通过控制退火温度来调节二维纳米点阵列的吸收光谱。还发现,吸收光谱的强度随着层数的增加而线性增加。这种增强的吸光度在生物传感设备中具有巨大的潜力。

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