首页> 外文会议>International Solid-State Sensors, Actuators and Microsystems Conference >AUTONOMOUS MICROFLUIDIC SENSING DEVICE EMPLOYING LIQUID CRYSTAL FOR DETECTION OF BIOLOGICAL INTERACTIONS
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AUTONOMOUS MICROFLUIDIC SENSING DEVICE EMPLOYING LIQUID CRYSTAL FOR DETECTION OF BIOLOGICAL INTERACTIONS

机译:采用液晶的自主微流体传感装置,用于检测生物相互作用

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We report the design of an autonomous sensing device, which employs a thermotropic nematic liquid crystal (LC) to conduct chemical or biological sensing tasks. The development of highly reproducible methods to create uniform LC thin film is critical for utilizing LCs for sensing. Herein, we describe the use of shear forces generated by the laminar flow of liquid within a microfluidic channel to create thin LC films stabilized within microfabricated structures. The orientational response of the supported LC films to targeted analytes in aqueous phases was observed through changes in the optical birefringence of the LC thin films. Experiments employing two systems are reported: (i) dodecyl trimethylammonium bromide (DTAB) dissolved in aqueous solution, and (ii) the hydrolysis of phospholipids by the enzyme phospholipase A_2 (PLA_2).
机译:我们报道了一种自主传感装置的设计,它采用热致向液晶(LC)来进行化学或生物传感任务。产生均匀LC薄膜的高度可重复方法的开发对于利用LCS来感测至关重要。在此,我们描述了使用由微流体通道内的液体流动产生的剪切力的用途,以产生稳定在微制造结构内的薄LC膜。通过变化的LC薄膜的光学双折射的变化观察支持的LC膜对水相的靶向分析物的定向响应。据报道,使用两个系统的实验:(i)溶解在水溶液中的十二烷基三甲基溴化铵(DTAB),并通过酶磷脂酶A_2(PLA_2)水解磷脂。

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