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LED Based Opto-wetting Platforms for Micro Mixing

机译:基于LED的光润湿平台,用于微混合

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The digital microfluidics utilizes the gradient in wettability for droplet transportation. This paper reports a novel technique of LED induced wetting ( Opto-wetting) where a single low power LED (Light emitting diode) emitting light of wavelength 395nm peak with luminous intensity of 300mcd (milli candela) is used to move two droplets of 20μL each on a photo responsive substrate of azobenzene (C12H10N2) coated PDMS (Poly Dimethyl Siloxane) substrate. The PDMS substrate of size 5cmx2cmx0.5cm were modified by thin film coating of Azobenzene dissolved in olive oil solution. The LED was aligned vertically on the top of the substrate. The pulsed operation of LED induces a spatial gradient of surface energy due to the reversible process of photo isomerization of Azobenzene molecules coated on the surface. The Photo-isomerization changes the conformation of the molecules thereby changing its surface energy .The change in surface energy of the substrate induces a change in contact angle of the droplet which initiates its movement. Two water droplets each of 20μL were dispensed on the substrate using micro syringe. Two droplets which were initially at a few cm distance apart were gradually moved towards the focus of light and merged together. The urine droplets (20μL) were moved and mixed with the red dye reagent (20μL) by controlling the light intensity of the LED. This concept provides a cost effective technique of droplet manipulation in the Lab on a chip domain where various multiplexed operations on proteins & DNA droplets can be done for point of care diagnostics.
机译:数字微流体利用液滴运输润湿性的梯度。本文报告了一种新颖的LED诱导润湿(光润湿)技术,其中单个低功率LED(发光二极管)发出波长395nm峰值的光强度为300mcd(毫坎德拉)的发光强度(Milli Candela),每个液滴每次移动两个20μl在偶氮烯(C12H10N2)涂覆的PDMS(聚二甲基硅氧烷)底物的光响应基板上。通过溶解在橄榄油溶液中的偶氮膜的薄膜涂层改性尺寸5cmx2cmx0.5cm的PDMS基板。 LED垂直对齐在基板的顶部。由于涂覆在表面上的偶氮苯分子的光异构化的可逆过程,LED的脉冲操作引起了表面能的空间梯度。光异构化改变了分子的构象,从而改变其表面能。基板的表面能的变化引起液滴的接触角的变化,该液滴引起其运动。使用微注射器将20μl中的两个水滴分配在基材上。最初在几厘米距离的两个液滴逐渐朝向光的焦点移动并合并在一起。通过控制LED的光强度,将尿液液滴(20μl)与红染料试剂(20μl)一起移动并与红染料试剂(20μL混合混合。该概念在芯片域上提供了实验室中的液滴操作的成本有效技术,其中可以进行蛋白质和DNA液滴的各种多重操作,以进行护理诊断点。

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