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题名

DETERMINISTIC GRADIENT NANOSTRUCTURES: FROM LITHOGRAPHIC FABRICATION TO FLUIDIC AND OPTICAL APPLICATIONS

姓名
学号
11650007
学位类型
博士
学位专业
工程学
导师
程鑫
论文答辩日期
2020-08-28
论文提交日期
2020-09-21
学位授予单位
香港大学
学位授予地点
香港
摘要
The research work presented in this dissertation falls into two parts: (1) development of reproducible lithographic fabrication techniques for centimeter-scale patterning of deterministic gradient nanostructures; (2) applications ofgradient nanostructures in fluidic and optical devices for gradient wettability, imaging-based ultrasensitive molecular detection, and near-infrared spectral measurement.The first part of this dissertation presents a method of generating centimeter-scale gradient nanostructures by using interference lithography with a spatially non-uniform exposure field. With two orthogonal exposures, the exposure patterns on the positive-tone photoresist show pillars at the center, where the Gaussian beam has the maximum intensity. The diameter of the pillars increases with increasing distance from the center. Nearby pillars start to merge, and the overall pattern evolves into a hole array with the diameter of the holes decreasing as the distance from the center further increases. Moreover, a tri-layer transfer strategy, which is featured with the stack of two resists layers together with a hard middle layer, is introduced. The transfer strategy possesses an enhanced process latitude, significantly benefiting the gradient pattern fabrication. By combining the non-uniform interference lithography, the thermal nanoimprint lithography (thermal-NIL), and the tri-layer transfer strategy, functional materials with concentric gradient nanostructures are fabricated.The second part of this dissertation focuses on the development of fluidic and optical applications by using the gradient nanostructures. Firstly, surfaces with gradient wettability induced by deterministically patterned nanostructures are presented. We used this gradient wettability surface to study the varying wetting behavior on nanostructures, shedding light on the diverse immersion situations of water droplets on surfaces with various nanopatterns. Secondly, we report an ultrasensitive sensor that can detect an angstrom-thick layer of adsorbed molecules through image acquisition and processing. When the sensor is illuminated with narrowband light (such as from a LED), the intensity pattern recorded on themetasurface changes with the surface-adsorbed molecules, enabling label-free, sensitive, and spectrometer-free molecular detection. Thirdly, a compact near-infrared spectrometer based on a Si metasurface is demonstrated. The Si metasurface consists of deterministic and ordered continuously varying gradient nanostructures, which act as continuously varying broadband optical filters. The number of filters is 1520, which is nearly an order of magnitude more than the reported literature. We have demonstrated the use of the Si metasurface spectrometer to reconstruct the spectra of incident lights. This is achieved by an algorithm that takes as its inputs a metasurface transmission image illuminated by an unknown light and a library of the filter transmission spectra.
关键词
语种
英语
培养类别
联合培养
成果类型学位论文
条目标识符http://sustech.caswiz.com/handle/2SGJ60CL/229960
专题工学院_材料科学与工程系
作者单位
香港大学/南方科技大学
推荐引用方式
GB/T 7714
Min SY. DETERMINISTIC GRADIENT NANOSTRUCTURES: FROM LITHOGRAPHIC FABRICATION TO FLUIDIC AND OPTICAL APPLICATIONS[D]. 香港. 香港大学,2020.
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