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이충엽 교수

Lee Choongyeop

경희대학교 기계공학부 · 재료과학

연구실 소개

이충엽 교수의 연구실은 슈퍼하이드로포빅 표면을 중심으로 액체의 미세유동 제어와 표면 기반 기술의 응용을 연구하고 있습니다. 특히, 마이크로/나노 구조가 형성된 표면에서의 유체 슬립 길이 증대, 기체 필름의 안정성 확보, 그리고 고압 환경에서도 지속 가능한 슈퍼하이드로포빅 상태를 유지하는 자가복원 메커니즘 개발에 초점을 맞추고 있습니다. 이는 유체역학적 저항 감소, 수분 수확, 이온 선택성 막 등 다양한 응용 분야에 기여할 잠재력을 지닙니다.

슈퍼하이드로포빅 표면유체 슬립 길이기체 필름 안정성나노소재 응용수분 수확

연구 현황

논문 수
98
총 인용 수
3,749
최근 5년 논문
30
주요 분야
재료과학

연구 성과 추이

표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.

5개년 연도별 논문 게재 수
30총합
2022
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주요 논문

15
1
논문|인용수 428·2008
Structured Surfaces for a Giant Liquid Slip
Choongyeop Lee, Chang‐Hwan Choi, Chang‐Jin Kim
SJR Q1Physical Review LettersOA

We study experimentally how two key geometric parameters (pitch and gas fraction) of textured hydrophobic surfaces affect liquid slip. The two are independently controlled on precisely fabricated microstructures of posts and grates, and the slip length of water on each sample is measured using a rheometer system. The slip length increases linearly with the pitch but dramatically with the gas fraction above 90%, the latter trend being more pronounced on posts than on grates. Once the surfaces are

Surfaces, Coatings and FilmsMaterials Science
2
논문|인용수 422·2011
Underwater Restoration and Retention of Gases on Superhydrophobic Surfaces for Drag Reduction
Choongyeop Lee, Chang‐Jin Kim
SJR Q1Physical Review Letters

Superhydrophobic (SHPo) surfaces have shown promise for passive drag reduction because their surface structures can hold a lubricating gas film between the solid surface and the liquid in contact with it. However, the types of SHPo surfaces that would produce any meaningful amount of reduction get wet under liquid pressure or at surface defects, both of which are unavoidable in the real world. In this Letter, we solve the above problem by (1) discovering surface structures that allow the restora

Surfaces, Coatings and FilmsMaterials Science
3
리뷰|인용수 325·2016
Superhydrophobic drag reduction in laminar flows: a critical review
Choongyeop Lee, Chang‐Hwan Choi, Chang‐Jin Kim
SJR Q1Experiments in FluidsOA

A gas in between micro- or nanostructures on a submerged superhydrophobic (SHPo) surface allows the liquid on the structures to flow with an effective slip. If large enough, this slippage may entail a drag reduction appreciable for many flow systems. However, the large discrepancies among the slippage levels reported in the literature have led to a widespread misunderstanding on the drag-reducing ability of SHPo surfaces. Today we know that the amount of slip, generally quantified with a slip le

Surfaces, Coatings and FilmsMaterials Science
4
논문|인용수 297·2009
Maximizing the Giant Liquid Slip on Superhydrophobic Microstructures by Nanostructuring Their Sidewalls
Choongyeop Lee, Chang‐Jin Kim
SJR Q1Langmuir

In an effort to maximize the liquid slip on superhydrophobic surfaces, we investigate the role of the nanoscale roughness on microscale structures by developing well-defined micro-nano hierarchical structures. The nonwetting stability and slip length on the dual-scale micro-nano structures are measured and compared with those on single-scale micro-smooth structures. A force balance between a liquid pressure and a surface tension indicates that hydrophobic nanostructures on the sidewall of microp

Surfaces, Coatings and FilmsMaterials Science
5
논문|인용수 198·2016
The effects of surface wettability on the fog and dew moisture harvesting performance on tubular surfaces
Donghyun Seo, Junghun Lee, Choongyeop Lee, Youngsuk Nam
SJR Q1Scientific ReportsOA

The efficient water harvesting from air-laden moisture has been a subject of great interest to address world-wide water shortage issues. Recently, it has been shown that tailoring surface wettability can enhance the moisture harvesting performance. However, depending on the harvesting condition, a different conclusion has often been reported and it remains unclear what type of surface wettability would be desirable for the efficient water harvesting under the given condition. Here we compare the

Renewable Energy, Sustainability and the EnvironmentEnergy
6
논문|인용수 197·2012
Large Apparent Electric Size of Solid-State Nanopores Due to Spatially Extended Surface Conduction
Choongyeop Lee, Laurent Joly, Alessandro Siria, Anne‐Laure Biance, Rémy Fulcrand, Lydéric Bocquet
SJR Q1Nano Letters

Ion transport through nanopores drilled in thin membranes is central to numerous applications, including biosensing and ion selective membranes. This paper reports experiments, numerical calculations, and theoretical predictions demonstrating an unexpectedly large ionic conduction in solid-state nanopores, taking its origin in anomalous entrance effects. In contrast to naive expectations based on analogies with electric circuits, the surface conductance inside the nanopore is shown to perturb th

Biomedical EngineeringEngineering
7
논문|인용수 130·2015
Two types of Cassie-to-Wenzel wetting transitions on superhydrophobic surfaces during drop impact
Choongyeop Lee, Youngsuk Nam, Henri Lastakowski, Janet I. Hur, Seungwon Shin, Anne‐Laure Biance, Christophe Pirat, Chang‐Jin Kim, Christophe Ybert
SJR Q2Soft Matter

Despite the fact that superhydrophobic surfaces possess useful and unique properties, their practical application has remained limited by durability issues. Among those, the wetting transition, whereby a surface gets impregnated by the liquid and permanently loses its superhydrophobicity, certainly constitutes the most limiting aspect under many realistic conditions. In this study, we revisit this so-called Cassie-to-Wenzel transition (CWT) under the broadly encountered situation of liquid drop

Surfaces, Coatings and FilmsMaterials Science
8
논문|인용수 115·2014
Osmotic Flow through Fully Permeable Nanochannels
Choongyeop Lee, Cécile Cottin-Bizonne, Anne‐Laure Biance, Pierre Joseph, Lydéric Bocquet, Christophe Ybert
SJR Q1Physical Review LettersOA

Osmosis across membranes is intrinsically associated with the concept of semipermeability. Here, however, we demonstrate that osmotic flow can be generated by solute gradients across nonselective, fully permeable nanochannels. Using a fluorescence imaging technique, we are able to measure the water flow rate inside single nanochannels to an unprecedented sensitivity of femtoliters per minute flow rates. Our results indicate the onset of a convective liquid motion under salinity gradients, from t

Biomedical EngineeringEngineering
9
논문|인용수 103·2014
Drop Impact Dynamics on Oil-Infused Nanostructured Surfaces
Choongyeop Lee, Hyun‐Sik Kim, Youngsuk Nam
SJR Q1Langmuir

We experimentally investigated the impact dynamics of a water drop on oil-infused nanostructured surfaces using high-speed microscopy and scalable metal oxide nano surfaces. The effects of physical properties of the oil and impact velocity on complex fluid dynamics during drop impact were investigated. We show that the oil viscosity does not have significant effects on the maximal spreading radius of the water drop, while it moderately affects the retraction dynamics. The oil viscosity also dete

Surfaces, Coatings and FilmsMaterials Science
10
논문|인용수 62·2011
Influence of Surface Hierarchy of Superhydrophobic Surfaces on Liquid Slip
Choongyeop Lee, Chang‐Jin Kim
SJR Q1Langmuir

We investigated how the surface hierarchy of superhydrophobic (SHPo) surfaces influences liquid slip by testing well-defined microposts that have nanoposts only on their top. Contrary to the commonly held belief, our results show that such hierarchical surfaces do not always lead to an increase of slip length despite their reduced solid fraction and enhanced hydrophobicity compared to single-scale surfaces. Adding nanoposts on top of the microposts resulted in an increase of slip length only if

Surfaces, Coatings and FilmsMaterials Science
11
논문|인용수 59·2017
Enhanced heat transfer using metal foam liquid supply layers for micro heat spreaders
Seunggeol Ryu, Jeonghoon Han, Jichul Kim, Choongyeop Lee, Youngsuk Nam
SJR Q1International Journal of Heat and Mass Transfer
Mechanical EngineeringEngineering
12
논문|인용수 55·2018
Effect of geometrical parameters on rebound of impacting droplets on leaky superhydrophobic meshes
Arvind Kumar, Abinash Tripathy, Youngsuk Nam, Choongyeop Lee, Prosenjit Sen
SJR Q2Soft Matter

) of the impinging droplet exceeds the breakthrough pressure (γΓ/A). At higher impact velocities, the ejected-jet breaks and separates from the main droplet. The remaining part of the droplet bounces off the surface showing different modes (normal bouncing as a vertically elongated drop or pancake bouncing). In this work, we have studied the effect of different geometrical parameters of superhydrophobic copper meshes on different modes of droplet rebound. We observe three different effects in ou

Computational MechanicsEngineering
13
논문|인용수 53·2019
Passive Anti-Flooding Superhydrophobic Surfaces
Donghyun Seo, Jaehwan Shim, Byungyun Moon, Kyungjun Lee, Jooyoung Lee, Choongyeop Lee, Youngsuk Nam
SJR Q1ACS Applied Materials & Interfaces

Superhydrophobic (SHPo) surfaces can provide high condensation heat transfer due to facilitated droplet removal. However, such high performance has been limited to low supersaturation conditions due to surface flooding. Here, we quantify flooding resistance defined as the rate of increase in the fraction of water-filled cavities with respect to the supersaturation level. Based on the quantitative understanding of surface flooding, we suggest effective anti-flooding strategies through tailoring t

Surfaces, Coatings and FilmsMaterials Science
14
논문|인용수 45·2019
Performance Analysis of Gravity-Driven Oil–Water Separation Using Membranes with Special Wettability
Seungtae Oh, Seokkan Ki, Seunggeol Ryu, Myung Chul Shin, Jinki Lee, Choongyeop Lee, Youngsuk Nam
SJR Q1Langmuir

A membrane with selective wettability to either oil or water has been utilized for highly efficient, environmentally friendly membrane-based oil-water separation. However, a predictive model, which can be used to evaluate the overall separation performance of the membrane, still needs further development. Herein, we investigate three separation performance parameters, that is, separation efficiency, liquid intrusion pressure, and mass flux in particular, as a function of pore geometry and liquid

Surfaces, Coatings and FilmsMaterials Science
15
논문|인용수 41·2020
Brushed lubricant-impregnated surfaces (BLIS) for long-lasting high condensation heat transfer
Donghyun Seo, Jaehwan Shim, Choongyeop Lee, Youngsuk Nam
SJR Q1Scientific ReportsOA

Recently, lubricant-impregnated surfaces (LIS) have emerged as a promising condenser surface by facilitating the removal of condensates from the surface. However, LIS has the critical limitation in that lubricant oil is depleted along with the removal of condensates. Such oil depletion is significantly aggravated under high condensation heat transfer. Here we propose a brushed LIS (BLIS) that can allow the application of LIS under high condensation heat transfer indefinitely by overcoming the pr

Surfaces, Coatings and FilmsMaterials Science

대표 연구 분야

Surfaces, Coatings and FilmsBiomedical EngineeringComputational MechanicsRenewable Energy, Sustainability and the EnvironmentSurgeryMechanical Engineering

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