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A packaged optical slot-waveguide ring resonator sensor array for multiplex label-free assays in labs-on-chips

机译:封装的光学缝隙波导环形谐振器传感器阵列,用于芯片实验室中的多重无标记测定

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摘要

We present the design, fabrication, and characterisation of an array of optical slot-waveguide ring resonator sensors, integrated with microfluidic sample handling in a compact cartridge, for multiplexed real-time label-free biosensing. Multiplexing not only enables high throughput, but also provides reference channels for drift compensation and control experiments. Our use of alignment tolerant surface gratings to couple light into the optical chip enables quick replacement of cartridges in the read-out instrument. Furthermore, our novel use of a dual surface-energy adhesive film to bond a hard plastic shell directly to the PDMS microfluidic network allows for fast and leak-tight assembly of compact cartridges with tightly spaced fluidic interconnects. The high sensitivity of the slot-waveguide resonators, combined with on-chip referencing and physical modelling, yields a volume refractive index detection limit of 5 x 10(-6) refractive index units (RIUs) and a surface mass density detection limit of 0.9 pg mm(-2), to our knowledge the best reported values for integrated planar ring resonators.
机译:我们介绍了光学狭缝波导环形谐振器传感器阵列的设计,制造和表征,该阵列与紧凑盒中的微流体样品处理集成在一起,可进行多路实时无标签生物传感。复用不仅可以实现高吞吐量,而且还为漂移补偿和控制实验提供了参考通道。我们使用对准误差的表面光栅将光耦合到光学芯片中,从而可以快速更换读出仪器中的墨盒。此外,我们新颖的使用双表面能粘合膜将硬塑料外壳直接粘合到PDMS微流体网络的方法,可以快速紧凑地将紧凑的滤芯和紧密的流体互连组件组装在一起。缝隙波导谐振器的高灵敏度与片上参考和物理建模相结合,产生的体积折射率检测极限为5 x 10(-6)折射率单位(RIU),表面质量密度检测极限为0.9 pg mm(-2),据我们所知,集成平面环形谐振器的最佳报告值。

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