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Geunbae Lim

Pohang University of Science and Technology · Engineering

About the Lab

Professor Geunbae Lim's research lab specializes in micro- and nanoscale engineering with a focus on developing advanced functional materials and devices for biomedical, environmental, and energy applications. Key research directions include the design of stretchable and mechanically robust sensors, miniaturized photoacoustic imaging probes using MEMS technology, and nanofluidic systems for ionic transport and sensing. The lab emphasizes innovation in wearable biosensors, implantable neural interfaces, and superhydrophobic surfaces with exceptional durability under deformation.

nanochannelswearable sensorsMEMSphotoacoustic microscopysuperhydrophobic surfaces

Research Overview

Papers
283
Total Citations
6,109
Papers (5y)
27
Primary Field
Engineering

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
27total
2022
2023
2024
2025
2026
Citations per year (5y)
112total
20222023202420252026

Selected Papers

15
1
Article|179 citations·2019
Bio-inspired swellable hydrogel-forming double-layered adhesive microneedle protein patch for regenerative internal/external surgical closure
Eun Young Jeon, Jungho Lee, Bum Ju Kim, Kye Il Joo, Ki Hean Kim, Geunbae Lim, Hyung Joon
SJR Q1Biomaterials
Pharmaceutical SciencePharmacology, Toxicology and Pharmaceutics
2
Article|149 citations·2018
An underwater superoleophobic nanofibrous cellulosic membrane for oil/water separation with high separation flux and high chemical stability
Seong Kyung Hong, Seonghan Bae, Hyungkook Jeon, Minseo Kim, Seong Jin Cho, Geunbae Lim
SJR Q1NanoscaleOA

during pressure-driven separations, which is a very promising feature for actual applications such as the large-scale treatment of industrial oily wastewater.

Surfaces, Coatings and FilmsMaterials Science
3
Article|143 citations·2003
DNA hybridization electrochemical sensor using conducting polymer
Junhoe Cha, Jung Im Han, Young. D. Choi, Dae Sung Yoon, Kwang W. Oh, Geunbae Lim
SJR Q1Biosensors and Bioelectronics
Molecular BiologyBiochemistry, Genetics and Molecular Biology
4
Article|132 citations·2017
Handheld Photoacoustic Microscopy Probe
Kyungjin Park, Jin Young Kim, Changho Lee, Seungwan Jeon, Geunbae Lim, Chulhong Kim
SJR Q1Scientific ReportsOA

Optical resolution photoacoustic microscopy (OR-PAM) is a non-invasive, label-free method of in vivo imaging with microscopic resolution and high optical contrast. Based on intrinsic contrasts, OR-PAM has expanded to include in vivo vessel imaging, flow cytometry, physiological parameter analysis, and single-cell characterization. However, since conventional OR-PAM systems have a fixed tabletop configuration, a large system size, and slow imaging speed, their use in preclinical and clinical stud

Biomedical EngineeringEngineering
5
Review|120 citations·2018
Recent Progress on Microelectrodes in Neural Interfaces
Geon Hwee Kim, Kanghyun Kim, Eunji Lee, Taechang An, WooSeok Choi, Geunbae Lim, Jung Hwal Shin
SJR Q2MaterialsOA

Brain‒machine interface (BMI) is a promising technology that looks set to contribute to the development of artificial limbs and new input devices by integrating various recent technological advances, including neural electrodes, wireless communication, signal analysis, and robot control. Neural electrodes are a key technological component of BMI, as they can record the rapid and numerous signals emitted by neurons. To receive stable, consistent, and accurate signals, electrodes are designed in a

Cellular and Molecular NeuroscienceNeuroscience
6
Article|116 citations·2017
Omni-Purpose Stretchable Strain Sensor Based on a Highly Dense Nanocracking Structure for Whole-Body Motion Monitoring
Hyungkook Jeon, Seong Kyung Hong, Min Seo Kim, Seong Jin Cho, Geunbae Lim
SJR Q1ACS Applied Materials & Interfaces

Here, we report an omni-purpose stretchable strain sensor (OPSS sensor) based on a nanocracking structure for monitoring whole-body motions including both joint-level and skin-level motions. By controlling and optimizing the nanocracking structure, inspired by the spider sensory system, the OPSS sensor is endowed with both high sensitivity (gauge factor ≈ 30) and a wide working range (strain up to 150%) under great linearity ( R 2 = 0.9814) and fast response time (<30 ms). Furthermore, the fabri

Biomedical EngineeringEngineering
7
Article|106 citations·2013
A Rubberlike Stretchable Fibrous Membrane with Anti‐Wettability and Gas Breathability
Seong Jin Cho, Hyoryung Nam, Hyobong Ryu, Geunbae Lim
SJR Q1Advanced Functional Materials

Abstract The fabrication of a stable, anti‐wetting surface is a very challenging issue in surface chemistry. In general, superhydrophobicity highly depends on the surface structure. Moreover, mechanical deformation of the surface structure can produce dramatic changes in the surface wetting state, and in some cases, may even result in a complete loss of the surface's unique wettability. However, the study of stable surfaces under mechanical deformation conditions has been limited to flexible sur

Surfaces, Coatings and FilmsMaterials Science
8
Article|91 citations·1996
Future of active catheters
Geunbae Lim, Kitae Park, M. Sugihara, Kazuyuki MINAMI, M. Esashi
SJR Q1Sensors and Actuators A Physical
Materials ChemistryMaterials Science
9
Article|77 citations·2012
Tunable Ionic Transport for a Triangular Nanochannel in a Polymeric Nanofluidic System
Bumjoo Kim, Joonseong Heo, Hyukjin Kwon, Seong Jin Cho, Jongyoon Han, Sung Jae Kim, Geunbae Lim
SJR Q1ACS Nano

Recently, tremendous engineering applications utilizing new physics of nanoscale electrokinetics have been reported and their basic fundamentals are actively researched. In this work, we first report a simple and economic but reliable nanochannel fabrication technique, leading to a heterogeneously charged triangular nanochannel. The nanochannel utilized the elasticity of PDMS when it bonded with a micrometer-scale structure on a substrate. Second, we successfully demonstrated novel ionic transpo

Biomedical EngineeringEngineering
10
Article|51 citations·2021
A pore-size tunable superhydrophobic membrane for high-flux membrane distillation
Seong Kyung Hong, Hyonguk Kim, Haran Lee, Geunbae Lim, Seong Jin Cho
SJR Q1Journal of Membrane Science
Water Science and TechnologyEnvironmental Science
11
Article|49 citations·2011
Preparation of stable superhydrophobic mesh with a biomimetic hierarchical structure
Taechang An, Seong Jin Cho, WooSeok Choi, Jin Ho Kim, Soo Taek Lim, Geunbae Lim
SJR Q2Soft MatterOA

Stable superhydrophobic meshes with a biomimetic hierarchical structure were fabricated via simple electropolymerization and chemical polymerization processes. Because the multi-scale hierarchical structure provides a stable superhydrophobic state by maintaining a Cassie state, these meshes have high static and dynamic waterproof capabilities.

Surfaces, Coatings and FilmsMaterials Science
12
Article|48 citations·2010
Real-time, step-wise, electrical detection of protein molecules using dielectrophoretically aligned SWNT-film FET aptasensors
Taechang An, Ki Su Kim, Sei Kwang Hahn, Geunbae Lim
SJR Q1Lab on a Chip

Aptamer functionalized addressable SWNT-film arrays between cantilever electrodes were successfully developed for biosensor applications. Dielectrophoretically aligned SWNT suspended films made possible highly specific and rapid detection of target proteins with a large binding surface area. Thrombin aptamer immobilized SWNT-film FET biosensor resulted in a real-time, label-free, and electrical detection of thrombin molecules down to a concentration of ca. 7 pM with a step-wise rapid response ti

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
13
Article|43 citations·2011
Superhydrophobic nanostructured silicon surfaces with controllable broadband reflectance
Seong Jin Cho, Taechang An, Jin Young Kim, Jungwoo Sung, Geunbae Lim
SJR Q1Chemical CommunicationsOA

Nanostructured superhydrophobic silicon surfaces with tunable reflectance are fabricated via a simple maskless deep reactive-ion etching process. By controlling the scale of the high-aspect-ratio nanostructures on a wafer-scale surface, surface reflectance is maximized or minimized over the UV-vis-IR range while maintaining superhydrophobic properties.

Surfaces, Coatings and FilmsMaterials Science
14
Article|43 citations·2021
Comprehensive Electrokinetic-Assisted Separation of Oil Emulsion with Ultrahigh Flux
Hyukjin J. Kwon, Minsoo Lee, Seong Kyung Hong, Chan Park, Seong Jin Cho, Geunbae Lim
SJR Q1ACS Nano

Many industries have a significant but largely unmet need for efficient and high-flux emulsion separation, particularly for nanoemulsions. Conventional separation membranes rely on size-based separation mainly utilizing a sieving mechanism plus a wetting phenomenon, resulting in a dramatic trade-off between separation efficiency and separation flux. Herein we address this challenge by adapting electrokinetics to membrane-based separation, using a charge-based mechanism capable of separating even

Biomedical EngineeringEngineering
15
Article|43 citations·2010
Replicable Multilayered Nanofibrous Patterns on a Flexible Film
Seong Jin Cho, Bumjoo Kim, Taechang An, Geunbae Lim
SJR Q1Langmuir

This report describes a simple method for the direct patterning of nanofibers on a flexible, insulating film. The method allows the replication of nanofibrous patterns from a single patterned electrode and the fabrication of multilayered patterns from various electrode shapes. The architecture of the fibrous patterns can be controlled by tailoring the ambient humidity, thickness of the insulating film, polarity of the electrode, and size of the patterned electrode. Using this novel technique, it

BiomaterialsMaterials Science

Research Areas

Biomedical EngineeringElectrical and Electronic EngineeringAtomic and Molecular Physics, and OpticsSurfaces, Coatings and FilmsBiomaterialsMolecular Biology

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