Wang Wei, Lin Yen-Heng, Guan Ruei-Syuan, Wen Ten-Chin, Guo Tzung-Fang, Lee Gwo-Bin
Department of Engineering Science, National Cheng Kung University, Tainan, Taiwan.
Opt Express. 2009 Sep 28;17(20):17603-13. doi: 10.1364/OE.17.017603.
This paper presents a decent polymer material for fabricating optically-induced dielectrophoretic (ODEP) devices, which can manipulate microparticles or cells by using moving light patterns. A thin film of a bulk-heterojunction (BHJ) polymer, a mixture of regioregular poly(3-hexylthiophene) and [6,6]-phenyl C61-butyric acid methyl ester, is used as a light-activated layer. When illuminated by a projected light beam, the photo-induced charge carriers created by the electron transfer of excitons at a donor/acceptor interface in the BHJ layer, disturbs the uniformly-distributed electric field applied on the ODEP devices. A negative DEP force is then generated by virtual electrodes defined by the optical images from a computer-programmable projector to manipulate microparticles, thus providing a functionalized platform for particle manipulation. The effect of the polymer thickness and composition on the magnitude of the generated DEP force has been extensively investigated. The maximum particle drag velocity and the force applied on 20.0 mum diameter polystyrene beads are measured to be approximately 202.2 mum/s and 38.2 pN, respectively, for a device with a 497.3-nm thick BHJ layer. The lifetime of the developed device is also explored (~5 hours), which is sufficient for applications of disposable ODEP devices. Therefore, the BHJ polymer may provide a promising candidate for future ODEP devices capable of nanoparticle and cell manipulation.
本文提出了一种用于制造光诱导介电泳(ODEP)器件的优良聚合物材料,该器件可通过移动光图案来操控微粒或细胞。一种本体异质结(BHJ)聚合物薄膜,即区域规整聚(3-己基噻吩)与[6,6]-苯基C61-丁酸甲酯的混合物,被用作光激活层。当被投射光束照射时,BHJ层中施主/受主界面处激子的电子转移产生的光生电荷载流子会扰乱施加在ODEP器件上的均匀分布电场。然后由计算机可编程投影仪的光学图像定义的虚拟电极产生负介电泳力来操控微粒,从而为微粒操控提供一个功能化平台。已广泛研究了聚合物厚度和组成对所产生的介电泳力大小的影响。对于具有497.3纳米厚BHJ层的器件,测量到作用在直径为20.0微米的聚苯乙烯珠上的最大粒子拖曳速度和力分别约为202.2微米/秒和38.2皮牛。还探索了所开发器件的寿命(约5小时),这对于一次性ODEP器件的应用来说足够了。因此·BHJ聚合物可能为未来能够操控纳米粒子和细胞的ODEP器件提供一个有前景的候选材料。