성균관대학교 · Engineering
Jinkee Lee 교수의 연구실은 마이크로유체 및 표면 과학 분야에서 활동하며, 특히 유체의 운동 제어와 표면 기반 기술에 중점을 두고 있습니다. 고속·저비용으로 제작 가능한 방향성 유체 이송 표면, 자가복구 가능한 미세구조 표면, 그리고 마이크로유체 연료전지의 효율성 향상을 위한 유동 제어 기법을 개발하고 있습니다. 특히 생체 모방 표면, 파라핀 왁스 기반 유영성 표면, 그리고 원자력현미경을 활용한 생체 고분자 동역학 분석 등 다학제적 접근을 통해 기술적 도전 과제를 해결하고자 합니다.
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
Slippery liquid-infused porous surfaces (SLIPSs) have been actively studied to improve the limitations of superhydrophobic (SHP) surfaces, especially the defects of the nonwetting chemical coating layer and the weak mechanical robustness of surface micro/nanostructures. However, the SLIPSs also have several drawbacks including volatilization and leakage of lubricant caused by long-term usage. In this study, we suggest the use of icephobic, highly transparent, and self-healing solid slippery surf
Intrinsic viscosity provides insight to molecular structure and interactions in solution. A new microchip method is described for fast and accurate measurements of viscosity and intrinsic viscosity of polymer and biopolymer solutions. Polymer samples are diluted with solvent in the microfluidic chip by imposing pressure gradients across the channel network. The concentration and flow dilutions of the polymer sample are calculated from the fluorescent signals recorded over a range of dilutions. T
Microfluidic fuel cells exploit the lack of convective mixing at low Reynolds number to eliminate the need for a physical membrane to separate the fuel from the oxidant. Slow transport of reactants in combination with high catalytic surface-to-volume ratios often inhibit the efficiency of a microfluidic fuel cell. The performance of microfluidic devices that rely on surface electrochemical reactions is controlled by the interplay between reaction kinetics and the rate of mass transfer to the rea
Ion-mediated changes in xylem hydraulic resistance are hypothesized to result from hydrogel like properties of pectins located in the bordered pit membranes separating adjacent xylem vessels. Although the kinetics of the ion-mediated changes in hydraulic resistance are consistent with the swelling/deswelling behavior of pectins, there is no direct evidence of this activity. In this report we use atomic force microscopy (AFM) to investigate structural changes in bordered pit membranes associated
Abstract Directional liquid‐transport surfaces have various applications, such as, open microfluidic devices, fog collection, oil–water separation, and surface lubrication. However, current liquid‐transport surfaces are expensive, complicated to manufacture, and lack scalability. Moreover, they exhibit low transport speeds and distances. In this study, a laser cutter is used to fabricate scalable, low‐cost unidirectional liquid‐transporting surfaces with enhanced transport speed and distance usi
We investigate the hydrodynamic deformation and breakup of double emulsion droplets under a uniform DC electric field. Based on comprehensive experiments, we observe four different breakup modes for the double emulsion droplet by varying the viscosity of shell liquid, and conductivity, permittivity or volume fraction of the core liquid. The breakup modes are classified as a unidirectional breakup mode, two different bidirectional breakup modes, and a tip-streaming breakup mode. We performed scal
A novel synthesis method for microspheres using micromolds based on the Laplace pressure difference is presented. This simple micromolding technique shows flexibility to synthesize particles using various reaction schemes, such as photopolymerization, sol-gel reactions, and colloidal assembly. This method can produce highly monodispersed spherical particles, without the need to use complicated control. It allows high flexibility in choosing materials and size control.
The field of droplet electrohydrodynamics (EHD) emerged with a seminal work of G.I. Taylor in 1966, who presented the so-called leaky dielectric model (LDM) to predict the droplet shapes undergoing distortions under an electric field. Since then, the droplet EHD has evolved in many ways over the next 55 years with numerous intriguing phenomena reported, such as tip and equatorial streaming, Quincke rotation, double droplet breakup modes, particle assemblies at the emulsion interface, and many mo
Nanobubbles (NBs) have a widespread application in antimicrobial activity, wastewater treatment, and ecological restoration due to numerous peculiar characteristics, such as small diameter, long-term stability, and ability to produce hydroxyl radicals. Despite significant applications, only limited comprehensive investigations are available on the role of surfactants and pH in NBs characteristics. Therefore, this study examines the effects of different surfactants (i.e., anionic, cationic, and n
Abstract