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基于针印干凝胶的发光传感器微阵列的互补金属氧化物半导体成像

CMOS Imaging of Pin-Printed Xerogel-Based Luminescent Sensor Microarrays.

作者信息

Yao Lei, Yung Ka Yi, Khan Rifat, Chodavarapu Vamsy P, Bright Frank V

机构信息

Department of Electrical and Computer Engineering, McGill University, Montreal, QB, H3A2A7 Canada.

Department of Chemistry, University at Buffalo, The State University of New York, Buffalo, NY 14260 USA.

出版信息

IEEE Sens J. 2010 Dec;10(12):1824-1832. doi: 10.1109/JSEN.2010.2047497.

Abstract

We present the design and implementation of a luminescence-based miniaturized multisensor system using pin-printed xerogel materials which act as host media for chemical recognition elements. We developed a CMOS imager integrated circuit (IC) to image the luminescence response of the xerogel-based sensor array. The imager IC uses a 26 × 20 (520 elements) array of active pixel sensors and each active pixel includes a high-gain phototransistor to convert the detected optical signals into electrical currents. The imager includes a correlated double sampling circuit and pixel address/digital control circuit; the image data is read-out as coded serial signal. The sensor system uses a light-emitting diode (LED) to excite the target analyte responsive luminophores doped within discrete xerogel-based sensor elements. As a prototype, we developed a 4 × 4 (16 elements) array of oxygen (O) sensors. Each group of 4 sensor elements in the array (arranged in a row) is designed to provide a different and specific sensitivity to the target gaseous O concentration. This property of multiple sensitivities is achieved by using a strategic mix of two oxygen sensitive luminophores ([Ru(dpp)] and ([Ru(bpy)]) in each pin-printed xerogel sensor element. The CMOS imager consumes an average power of 8 mW operating at 1 kHz sampling frequency driven at 5 V. The developed prototype system demonstrates a low cost and miniaturized luminescence multisensor system.

摘要

我们展示了一种基于发光的微型多传感器系统的设计与实现,该系统使用针印干凝胶材料作为化学识别元件的主体介质。我们开发了一种互补金属氧化物半导体(CMOS)成像器集成电路(IC),用于对基于干凝胶的传感器阵列的发光响应进行成像。该成像器IC采用26×20(520个元件)的有源像素传感器阵列,每个有源像素包括一个高增益光电晶体管,用于将检测到的光信号转换为电流。该成像器包括一个相关双采样电路和像素地址/数字控制电路;图像数据作为编码串行信号读出。该传感器系统使用发光二极管(LED)来激发掺杂在离散的基于干凝胶的传感器元件中的目标分析物响应发光体。作为原型,我们开发了一个4×4(16个元件)的氧气(O)传感器阵列。阵列中的每组4个传感器元件(按行排列)被设计为对目标气态O浓度提供不同且特定的灵敏度。通过在每个针印干凝胶传感器元件中战略性地混合两种氧敏感发光体([Ru(dpp)]和[Ru(bpy)])来实现这种多灵敏度特性。该CMOS成像器在5V驱动下以1kHz采样频率运行时平均功耗为8mW。所开发的原型系统展示了一种低成本的微型发光多传感器系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a35f/3908789/31b8e261496d/nihms540994f1.jpg

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