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Fabrication of integrated channel waveguides in polydimethylsiloxane (PDMS) using proton beam writing (PBW): Applications for fluorescence detection in microfluidic channels

机译:使用质子束写入(PBW)制备聚二甲基硅氧烷(PDMS)中的集成通道波导:微流体通道中的荧光检测应用

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Proton beam writing (PBW) is a lithographic technique that utilizes MeV protons in a direct write mode to fabricate micro/nano features in suitable resist material (E.g PMMA, SU-8, silicon, Foturan). These micro/nano structures may be used in an electroplating step to yield robust metallic stamps/molds for the replication of the original and lends itself to the fabrication of micro/nano fluidic channels that are important components in devices such as biophotonic chips. Another feature of proton bombardment is its ability to induce an increase in refractive index along the ions path, in particular at the end of its range where there is substantial nuclear scattering. This allows PBW to directly write buried waveguides that can be accurately aligned with fluidic channels. Polydimethylsiloxane (PDMS) is an optically clear, biocompatible polymer that can be readily used with a mold (such as that created with PBW) and easily sealed so as to produce biophotonic chips containing micro/nano fluidic channels. This has lead us to favour PDMS as the base material for our work on the development of these biophotonic chips. The present work is concerned with the production of integrating channel waveguides in PDMS chips, so as to have a working device that may be used to detect fluorescently tagged biological samples. For this we have adopted two approaches, namely(1) directly embedding optical fibres in the polymer and (2) using PBW to directly write buried waveguides in the polymer.
机译:质子梁写入(PBW)是一种光刻技术,其利用直接写入模式中的MEV质子,以制造合适的抗蚀剂材料(例如PMMA,SU-8,硅,Foturan)中的微/纳米特征。这些微/纳米结构可用于电镀步骤中,得到用于复制原件的鲁棒金属印模/模具,并将其自身用于制造微/纳米流体通道,这些通道是诸如生物光学芯片的装置中的重要组成部分。质子轰击的另一个特征是其能够促进沿离子路径沿折射率的增加,特别是在其具有大量核散射的范围内的末端。这允许PBW直接写入掩埋波导,其可以与流体通道精确对齐。聚二甲基硅氧烷(PDMS)是光学透明的生物相容性聚合物,其可以容易地与模具(例如用PBW产生的模具使用)并且容易地密封,以产生含有微/纳米流体通道的生物光学芯片。这使我们能够利用PDMS作为我们对这些生物光学芯片开发的工作的基础材料。本作本作涉及在PDMS芯片中积分通道波导的生产,以便具有可用于检测荧光标记的生物样品的工作装置。为此,我们采用了两种方法,即(1)使用PBW直接将光纤直接嵌入聚合物中,并在聚合物中直接写入掩埋波导。

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