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用于电动分离装置的纯二氧化硅光波导、光纤耦合器和高纵横比亚微米通道。

Pure-silica optical waveguides, fiber couplers, and high-aspect ratio submicrometer channels for electrokinetic separation devices.

作者信息

Mogensen Klaus B, Eriksson Fredrik, Gustafsson Omar, Nikolajsen Rikke P H, Kutter Jörg P

机构信息

MIC--Department of Micro and Nanotechnology, Technical University of Denmark, Kgs. Lyngby, Denmark.

出版信息

Electrophoresis. 2004 Nov;25(21-22):3788-95. doi: 10.1002/elps.200406077.

Abstract

A new fabrication procedure for integration of ultraviolet transparent pure-silica planar waveguides, fiber couplers and high-aspect ratio submicrometer channels is presented. Only a single photolithographic mask step is required. The channels are 80-90 microm deep and the width can be reduced to about 0.5 microm, corresponding to a height-to-width ratio of more than 150. The core of the waveguides consists of pure silicon dioxide, which is favorable over doped silica, due to the absence of absorption centers associated with the dopants. This furthermore improves the long-term stability of the waveguides, because of an increased radiation resistance of the glass. The propagation loss decreases from 1.0 dB/cm at 200 nm to 0.2 dB/cm at 800 nm, which, to our knowledge, is the lowest propagation loss reported for integrated planar waveguides in the ultraviolet wavelength region to date. The effective optical path length is 1.2 mm for an absorbance cell with a nominal length of 1.0 mm, indicating effective suppression of stray light. The limit of detection for paracetamol when present in the entire channel network was determined to 3 microg/mL. Finally, the applicability of the fabricated devices for capillary electrophoresis was evaluated by separation of caffein, paracetamol and ketoprofone using absorbance detection at 254 nm.

摘要

本文介绍了一种用于集成紫外透明纯硅平面波导、光纤耦合器和高纵横比亚微米通道的新制造工艺。该工艺仅需一步光刻掩膜步骤。通道深度为80 - 90微米,宽度可减小至约0.5微米,对应的高宽比超过150。波导的纤芯由纯二氧化硅组成,由于不存在与掺杂剂相关的吸收中心,因此比掺杂二氧化硅更具优势。此外,由于玻璃的抗辐射性增强,这进一步提高了波导的长期稳定性。传播损耗从200纳米处的1.0分贝/厘米降至800纳米处的0.2分贝/厘米,据我们所知,这是迄今为止报道的紫外波长区域集成平面波导的最低传播损耗。对于标称长度为1.0毫米的吸收池,有效光程长度为1.2毫米,表明对杂散光有有效抑制。当对乙酰氨基酚存在于整个通道网络中时,其检测限确定为3微克/毫升。最后,通过在254纳米处使用吸光度检测法分离咖啡因、对乙酰氨基酚和酮洛芬,评估了所制造器件在毛细管电泳中的适用性。

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