Liu Weiyu, Ren Yukun, Tao Ye, Yao Bobin, Li You
School of Electronics and Control Engineering, Chang'an University, Xi'an, P. R. China.
School of Mechatronics Engineering, Harbin Institute of Technology, Harbin, P. R. China.
Electrophoresis. 2018 Mar;39(5-6):779-793. doi: 10.1002/elps.201700234. Epub 2017 Sep 25.
We report herein field-effect control on in-phase electrothermal streaming from a theoretical point of view, a phenomenon termed "alternating-current electrothermal-flow field effect transistor" (ACET-FFET), in the context of a new technology for handing analytes in microfluidics. Field-effect control through a gate terminal endows ACET-FFET the ability to generate arbitrary symmetry breaking in the transverse vortex flow pattern, which makes it attractive for mixing microfluidic samples. A computational model is developed to study the feasibility of this new microfluidic device design for micromixing. The influence of various parameters on developing an efficient mixer is investigated, and an integrated layout of discrete electrode array is suggested for achieving high-throughput mixing. Our physical demonstration with field-effect electrothermal flow control using a simple electrode structure proves invaluable for designing active micromixers for modern micro total analytical system.
在此,我们从理论角度报告了对同相电热流动的场效应控制,这是一种在微流体中处理分析物的新技术背景下被称为“交流电热流场效应晶体管”(ACET - FFET)的现象。通过栅极端进行的场效应控制赋予了ACET - FFET在横向涡流模式中产生任意对称性破缺的能力,这使其在微流体样品混合方面具有吸引力。开发了一个计算模型来研究这种用于微混合的新型微流体装置设计的可行性。研究了各种参数对开发高效混合器的影响,并提出了用于实现高通量混合的离散电极阵列的集成布局。我们使用简单电极结构进行场效应电热流控制的物理演示对于设计用于现代微全分析系统的有源微混合器具有极高价值。