Electrokinetic flow and energy conversion in a curved microtube
Author:
Publisher
Springer Science and Business Media LLC
Subject
Applied Mathematics,Mechanical Engineering,Mechanics of Materials
Link
https://link.springer.com/content/pdf/10.1007/s10483-022-2886-5.pdf
Reference26 articles.
1. CHEN, L., YANG, C., XIAO, Y., YAN, X., HU, L., EGGERSDORFER, M., CHEN, D., WEITZ, D. A., and YE, F. Milli-, micro- and nano-fluidics: manipulating fluids at varying length scales. Materials Today Nano, 16, 100136 (2021)
2. LASER, D. J. and SANTIAGO, J. G. A review of micropumps. Journal of Micromechanics and Microengineering, 14, R35–R64 (2004)
3. STONE, H. A., STROOCK, A. D., and AJDARI, A. Engineering flows in small devices: microfluidics toward a lab-on a-chip. Annual Review of Fluid Mechanics, 36, 381–411 (2004)
4. CHO, C. C., CHEN, C. L., and CHEN, C. K. Mixing of non-Newtonian fluids in wavy serpentine microchannel using electrokinetically driven flow. Electrophoresis, 33, 743–750 (2012)
5. OKAFOR, O., WEILHARD, A., FERNANDES, J. A., KARJALAINEN, E., GOODRIDGE, R., and SANS, V. Advanced reactor engineering with 3D printing for the continuous-flow synthesis of silver nanoparticles. Reaction Chemistry & Engineering, 2, 129–136 (2017)
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