1 Cao, J., Cheng, P., Hong, F., “A numerical analysis of forces imposed on particles in conventional dielectrophoresis in microchannels with interdigitated electrodes”, Journal of Electrostatics, 66, 620-626(2008). 2 Zhang, H., Han, P., Shen, G., Dai, J., Chen, H., “Dielectrophoresis and its application for separation of inorganic”, Journal of the Central University for Nationalities(Natural Sciences Edition), 17, 45-51(2008). 3 Pohl, H.A., Dielectrophoresis, Cambridge University Press, Cambridge(1978). 4 Kadaksham, J., Singh, P., Aubry, N., “Manipulation of particles using dielectrophoresis”, Mechanics Research Communications, 33, 108-122(2006). 5 Ravula, S.K., Branch, D.W., James, C.D., Townsend, R.J., Hill, M., Kaduchak, G., Ward, M., Brener, I., “A microfluidic system combining acoustic and dielectrophoretic particle preconcentration and focusing”, Sensors and Actuators B: Chemical, 130, 645-652(2008). 6 Liu, X., Spencer, J.L., Kaiser, A.B., Arnold, W.M., “Selective purification of multiwalled carbon nanotubes by dielectrophoresis within a large array”, Current Applied Physics,(6), 427-431(2006). 7 Seo, Y., Kumar, S., Kim, G., “Photoconductivity characteristics of ZnO nanoparticles assembled in nanogap electrodes for portable photodetector applications”, Physica E, 42, 1163-1166(2010). 8 Suehiro, J., Imakiire, H., Hidaka, S., Ding, W., Zhou, G., Imasaka, K., Hara, M., “Schottky-type response of carbon nanotube NO2 gas sensor fabricated onto aluminum electrodes by dielectrophoresis”, Sensors and Actuators B: Chemical, 114, 943-94(2006). 9 Lungu, M., “Separation of small metallic nonferrous particles in low concentration from mineral wastes using dielectrophoresis”, Mineral Processing, 78, 215-219(2006). 10 Chen, H., Huang, H., Zhu, Y., Li, D., “The effects of refining efficiency of the diesel fuel by dielectrophoresis”, Petroleum Processing and Petrochemicals, 40, 51-54(2009).(in Chinese) 11 Kang, Y., Cetin, B., Wu, Z., “Continuous particle separation with localized AC-dielectrophoresis using embedded electrodes and an insulating hurdle”, Electrochimica Acta, 54, 1715-1720(2009). 12 Liu, Z.P., Pei, L.X., Ji, H.B., Yao, X.D., “Preparation of well-shaped microcapsule immobilizing inorganic nanoparticles”, Chin. J. Chem. Eng., 16(3), 384-388(2008). 13 Lin, H., “Production practice of high-purity rare-earth oxides”, Sichuan Nonferrous Metals,(2), 2-6(2008).(in Chinese) 14 He, P., Cang, D., Zong, Y., “Separation of rare earth elements from their binary oxide mixtures via chemical vapor transport reaction”, Chinese Rare Earths, 26, 53-56(2005). 15 Chen, G.W., Yue, J., Yuan, Q., “Gas-liquid microreaction technology: recent developments and future challenges”, Chin. J. Chem. Eng., 16(5), 663-669(2008). 16 Paul, R., Kaler, K.V.I.S., “Theory of electrode polarization in dielectrophoresis and electrorotation”, Journal of Collide and Interface Science, 194, 225-238(1997). 17 Crews, N., Darabi, J., Voglewede, P., Guo, F., Bayoumi, A., “An analysis of interdigitated electrode geometry for dielectrophoretic particle transport in micro-fluidics”, Sensors and Actuators B: Chemical, 125, 672-679(2007). 18 Yasukawa, T., Suzuki, M., Shiku, H., Matsue, T., “Control of the microparticle position in the channel based on dielectrophoresis”, Sensors and Actuators B: Chemical, 142, 400-403(2009). 19 Aldaeus, F., Lin, Y., Amberg, G., Roeraade, J., “Multi-step dielectrophoresis for separation of particles”, Journal of Chromatography A, 1131, 261-266(2006). 20 Molla, S.H., Bhattacharjee, S., “Prevention of colloidal membrane fouling employing dielectrophoretic forces on a parallel electrode array”, J. Membr. Sci., 255, 187-199(2005). 21 Chen, D.F., Du, H., Li, W.H., “Bioparticle separation and manipulation using dielectrophoresis”, Sensors and Actuators A, 133, 329-334(2007). 22 Wei, C., Wei, T.Y., Tai, F.C., “The characteristics of multi-walled carbon nanotubes by a two-step separation scheme via dielectrophoresis”, Diamond and Related Materials, 19, 573-577(2010). 23 Jiang, K., Liu, W., Wan, L., Zhang, J., “Manipulation of ZnO nanostructures using dielectrophoretic effect”, Sensors and Actuators B: Chemical, 134, 79-88(2008). |