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Selective fluorescence functionalization of dye-doped polymerized structures fabricated by direct laser writing (DLW) lithography

机译:选择性荧光功能化的染料聚合结构制造直接激光写作(DLW)光刻

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摘要

The continuous development of the vast arsenal of fabrication techniques is a pivotal factor in the breakthrough of nanotechnology. Although the broad interest is generally focused on the reduction of the dimensions of the fabricated structures, localized functionalization of the nanomaterials emerges as a key factor closely linked to their potential applications. In particular, fabrication of spatially selective fluorescence nanostructures is highly demanded in nanophotonics, as for example in three-dimensional (3D) optical data storage (ODS), where massive storage capacity and fast writing-reading processes are promised. We have developed an innovative method to control the location and intensity of the fluorescence signal in dye-doped photopolymerized structures fabricated with Direct Laser Writing (DLW) lithography. Well-defined fluorescent pixels (area = 0.24 mu m(2)) were written inside a polymer matrix with the help of a femtosecond pulsed laser (multiphoton absorption) via a thermally-induced di-aggregation of a fluorescent dye. Moreover, we have accomplished a fine control of the fluorescence intensity which can increase the storage capacity of ODS systems fabricated with this approach.
机译:绝大阿森纳的不断发展制造技术是一个关键因素纳米技术的突破。通常是集中在广泛的兴趣减少的尺寸制作结构、本地化的功能化纳米材料成为一个关键因素与他们的潜在的应用。特别制造的空间选择性荧光纳米结构是高度要求纳米光子学,例如三维(3 d)光学数据存储(ODS),巨大的存储容量和快速writing-reading过程是承诺。开发了一个创新的方法来控制位置和强度的荧光信号在染料photopolymerized结构用直接激光制作的写作(DLW)光刻技术。(面积= 0.24μm(2))都是在写的聚合物基质的帮助下飞秒脉冲激光多光子吸收通过thermally-induced di-aggregation荧光染料。荧光强度的控制增加ODS系统的存储容量用这种方法制作的。

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