Fabrication of nanoparticles for biosensing using UV-NIL and lift-off

T. Mitteramskogler, M. Haslinger, A. Shoshi, S. Schrittwieser, J. Schotter, H. Brueckl, M. Muehlberger
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引用次数: 2

Abstract

A novel technique to realize large quantities of stacked multifunctional anisotropic nanoparticles with narrow size distribution is presented. Through the combination of Ultraviolet Nano-Imprint Lithography (UV-NIL), physical vapor deposition and subsequent lift-off processes we fabricate and disperse these particles in solution for the use in biomolecular sensing applications. Compared to chemical nanoparticle synthesis our approach holds several advantages. First, one can control the nanoparticle shape by choosing an appropriate nanopattern for the UV-NIL process. Second, we can choose the composition of the nanoparticles as the materials are deposited layer-wise by sputter deposition. Third, we can fabricate nanoparticles with very small geometrical variations. This is in contrast to chemical synthesis methods where the layer thicknesses and particle size distribution are harder to control.
UV-NIL生物传感纳米粒子的制备及发射
提出了一种实现多功能型各向异性纳米颗粒大量堆积、尺寸分布窄的新技术。通过紫外纳米压印光刻(UV-NIL)、物理气相沉积和随后的提升工艺的结合,我们制造并分散这些颗粒在溶液中,用于生物分子传感应用。与化学合成纳米粒子相比,我们的方法有几个优点。首先,可以通过为UV-NIL工艺选择合适的纳米图案来控制纳米颗粒的形状。其次,我们可以选择纳米颗粒的组成,因为材料是通过溅射沉积分层的。第三,我们可以制造几何变化非常小的纳米颗粒。这与化学合成方法相反,化学合成方法的层厚度和粒度分布难以控制。
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