Department of Electrical and Computer Engineering, The University of British Columbia, Vancouver, BC, Canada.
Nanotechnology. 2012 Dec 14;23(49):495606. doi: 10.1088/0957-4484/23/49/495606. Epub 2012 Nov 19.
Dielectrophoresis (DEP) is a popular technique for fabricating carbon nanotube (CNT) devices. The electric current passing through the solution during DEP creates a temperature gradient, which results in electrothermal fluid flow because of the presence of the electric field. CNT solutions prepared with various methods can have different conductivities and the motion of the solution because of the electrothermal phenomenon can affect the DEP deposition differently in each case. We investigated the effect of this movement in solutions with various levels of conductivity through experiments as well as numerical modeling. Our results show that electrothermal motion in the solution can alter the deposition pattern of the nanotubes drastically for high conductivity solutions, while DEP remains the dominant force when a low conductivity (surfactant-free) solution is used. The extent of effectiveness of each force is discussed in the various cases and the fluid movement model is investigated using two- and three-dimensional finite element simulations.
介电泳(DEP)是一种用于制造碳纳米管(CNT)器件的流行技术。在 DEP 过程中,溶液中通过的电流会产生温度梯度,由于电场的存在,会导致电热流体流动。由于电热现象,使用不同方法制备的 CNT 溶液的电导率和溶液的运动状态可能会有所不同,这会对每种情况下的 DEP 沉积产生不同的影响。我们通过实验和数值模拟研究了具有不同电导率的溶液中这种运动的影响。我们的结果表明,对于高电导率溶液,溶液中的电热运动会极大地改变纳米管的沉积模式,而当使用低电导率(无表面活性剂)溶液时,DEP 仍然是主要作用力。在各种情况下,讨论了每种力的有效性程度,并使用二维和三维有限元模拟研究了流体运动模型。