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Amorphous silicon photosensors integrated in microfluidic structures as a technological demonstrator of a “true” Lab-on-Chip system

机译:集成在微流体结构中的非晶硅光电传感器,作为“真正的”芯片实验室系统的技术演示者

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摘要

In this paper we present a compact technological demonstrator including on the same glass substrate an electrowetting-on-dielectrics (EWOD) system, a linear array of amorphous silicon photosensor and a capillary-driven microfluidic channel. The proposed system comprises also a compact modular electronics controlling the digital microfluidics through the USB interface of a computer. The system provides therefore both on-chip detection and microfluidic handling needed for the realization of a ‘true’ Lab-on-Chip.\ud\udThe geometry of the photosensors has been designed to maximize the radiation impinging on the photosensor and to minimize the inter-site crosstalk, while the fabrication process has been optimized taking into account the compatibility of all the technological steps for the fabrication of the EWOD system, the photosensor array and the microfluidics channels.\ud\udAs a proof of the successful integration of the different technological steps we demonstrated the ability of the a-Si:H photosensors to detect the presence of a droplet over an EWOD electrode and the effective coupling between the digital and the continuous microfluidics, that can allow for functionalization, immobilization and recognition of biomolecules without external optical devices or microfluidic interconnections.
机译:在本文中,我们提出了一个紧凑的技术演示器,该演示器在同一玻璃基板上包括电介质上电润湿(EWOD)系统,非晶硅光电传感器的线性阵列和毛细管驱动的微流体通道。所提出的系统还包括紧凑的模块化电子设备,其通过计算机的USB接口控制数字微流体。因此,该系统同时提供了实现“真正的”芯片实验室所需的芯片上检测和微流体处理。\ ud \ ud光电传感器的几何形状已设计成能最大化照射在光电传感器上的辐射,并最大程度地减少辐射。站点间串扰,同时优化了制造工艺,同时考虑了EWOD系统,光传感器阵列和微流体通道的所有制造工艺的兼容性。通过不同的技术步骤,我们证明了a-Si:H光电传感器能够检测EWOD电极上液滴的存在以及数字和连续微流体之间的有效耦合,从而可以实现生物分子的功能化,固定化和识别外部光学设备或微流体互连。

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