Department of Environmental Science and Engineering, Dalian Maritime University, Dalian, Liaoning, P. R. China.
Department of Marine Engineering, Dalian Maritime University, Dalian, Liaoning, P. R. China.
Electrophoresis. 2023 Dec;44(23):1756-1773. doi: 10.1002/elps.202300115. Epub 2023 Jul 12.
Much progress has been made in the electrokinetic phenomena inside nanochannels in the last decades. As the dimensions of the nanochannels are compatible to that of the electric double layer (EDL), the electrokinetics inside nanochannels indicate many unexpected behaviors, which show great potential in the fields of material science, biology, and chemistry. This review summarizes the recent development of nanofluidic electrokinetics in both fundamental and applied research. First, the techniques for constructing nanochannels are introduced to give a guideline for choosing the optimal fabrication technique based on the specific feature of the nanochannel. Then, the theories and experimental investigations of the EDL, electroosmotic flow, and electrophoresis of nanoparticles inside the nanochannels are discussed. Furthermore, the applications of nanofluidic electrokinetics in iontronics, sensing, and biomolecule separation fields are summarized. In Section 5, some critical challenges and the perspective on the future development of nanofluidic electrokinetics are briefly proposed.
在过去的几十年中,纳米通道内的电动现象取得了很大的进展。由于纳米通道的尺寸与电动双电层(EDL)相匹配,因此纳米通道内的电动现象表现出许多出人意料的行为,这在材料科学、生物学和化学领域具有很大的潜力。本综述总结了纳米流动电动动力学在基础研究和应用研究方面的最新进展。首先,介绍了构建纳米通道的技术,为根据纳米通道的特定特征选择最佳制造技术提供了指导。然后,讨论了纳米通道内 EDL、电渗流和纳米颗粒电泳的理论和实验研究。此外,还总结了纳米流动电动动力学在离子电子学、传感和生物分子分离领域的应用。在第 5 节中,简要提出了纳米流动电动动力学的一些关键挑战和未来发展展望。