supported by the National Natural Science Foundation of China(Grant Nos.52162012,52262014,22308074,22368019);Key Research and Development Project of Hainan Province(Grant Nos.ZDYF2022SHFZ053);Science and Technology Innovation Talent Platform Fund for South China Sea New Star of Hainan Province(Grant No.NHXXRCXM202305);Open Research Project of State Key Laboratory of Marine Resource Utilization in South China Sea(Grant No.MRUKF2023020).
The integration of ionic power generation with solar-driven water evaporation presents a promising solution to the critical global problems of freshwater scarcity and clean energy deficiency.In this work,a scalable no...
National Natural Science Foundation of China(52025132,21975209,21621091,12075191);National Key R&D Program of China(2018YFA0209500);National Science Foundation of Fujian Province(2022J02059);Fundamental Research Funds for the Central Universities in China(20720220085);111 Project(B17027,B16029);Science and Technology Projects of Innovation Laboratory for Sciences and Technologies of Energy Materials of Fujian Province(grant no.RD2022070601).
Streaming potential is mainly related to electrokinetic energy conversion,which has been considered to show promising potential for advanced technologies,especially sensing.The inherent property of streaming potential...
The multilayer microchannel flow is a promising tool in microchannel-based systems such as hybrid microfluidics. To assist in the efficient design of two-liquid pumping system, a two-fluid electroosmotic flow of immis...
Project supported by the National Natural Science Foundation of China(Nos.11902165 and 11772162);the Natural Science Foundation of Inner Mongolia Autonomous Region of China(No.2019BS01004);the Inner Mongolia Grassland Talent of China(No.12000-12102408)。
Curved channels are ubiquitous in microfluidic systems.The pressure-driven electrokinetic flow and energy conversion in a curved microtube are investigated analytically by using a perturbation analysis method under th...
Project supported by the National Natural Science Foundation of China(Nos.11772162,11802147);the Natural Science Foundation of Inner Mongolia(No.2018LH01015);the Foundation of Inner Mongolia Autonomous Region University Scientific Research Project(No.NJZY18093);the Foundation of Inner Mongolia University of Technology(No.ZD201714)。
In this work,the effects of externally applied axial pressure gradients and transverse magnetic fields on the electrokinetic energy conversion(EKEC)efficiency and the streaming potential of nanofluids through a microa...
Project supported by Science and Engineering Research Board(SERB);Department of Science and Technology,Government of India,New Delhi(No.CRG/2018/000153)
A comprehensive theoretical study of entropy generation during electroki-netically driven transport of a nanofluid is of prime concern in the paper. The flow is considered to take place on a wavy channel under the act...
This work is partially supported by the Natural Science Foundation of China(Grants No.11626095);Postdoctoral Fellowships Scheme of the Hong Kong Polytechnic University(1-YW1D);the Natural Science Foundation of Hunan Province(Grants No.2017JJ3045).
The electrokinetic mixing,as a powerful technique in microfluidic devices,is widely used in many applications.In this study,a more general dynamic model,which consists of Poisson equation,Nernst-Planck equation and Na...
supported in part by the Australian Research Council through a Discovery Early Career Researcher Award to Qiang SUN
We develop a mathematical model to describe the flow in a microchannel driven by the upper stretching wall of the channel in the presence of electrokinetic effects. In this model, we avoid imposing any unphysical boun...
Project supported by the National Natural Science Foundation of China (Grant No. 10902105);the Natural Science Foundation of Zhejiang Province (Grant No. 2010R10014)
In this study, the irreversible deposition of microparticles from electrokinetic microfluidic flow in a 90° bend was exami- ned both computationally and theoretically. The flow and electric fields were firstly simula...
The main goal of this work was to quantify the detection of colistin at low levels in urine samples through the practical application of mixed surfactant micellar electrokinetic chromatography–laser-induced fluoresce...