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Woochul Song

Pohang University of Science and Technology · Engineering

About the Lab

Professor Woochul Song's research lab focuses on bioinspired materials design, particularly in developing synthetic membranes and artificial water channels that mimic the exceptional transport properties of biological systems such as aquaporins. The lab explores the fundamental principles of molecular transport in nano- and micro-scale systems, with an emphasis on overcoming permeability-selectivity trade-offs in polymer membranes through precise molecular engineering. Research spans molecular dynamics simulations, materials synthesis, and the fabrication of hierarchical nanostructures using block copolymers and plasmonic nanocomposites for advanced separation and energy applications.

artificial water channelsbioinspired membranesmolecular transportblock copolymer self-assemblysupercritical fluids

Research Overview

Papers
40
Total Citations
1,471
Papers (5y)
15
Primary Field
Engineering

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
15total
2022
2023
2024
2025
2026
Citations per year (5y)
262total
20222023202420252026

Selected Papers

15
1
Article|167 citations·2019
Artificial water channels enable fast and selective water permeation through water-wire networks
Woochul Song, Himanshu Joshi, Ratul Chowdhury, Joseph S. Najem, Yue-xiao Shen, Chao Lang, Codey B. Henderson, Yuming Tu, Megan Farell, Megan Pitz, Costas D. Maranas, Paul S. Cremer
SJR Q1Nature NanotechnologyOA
Biomedical EngineeringEngineering
2
Article|158 citations·2023
MOF water harvester produces water from Death Valley desert air in ambient sunlight
Woochul Song, Zhiling Zheng, Ali H. Alawadhi, Omar M. Yaghi
SJR Q1Nature Water
Renewable Energy, Sustainability and the EnvironmentEnergy
3
Article|150 citations·2018
Achieving high permeability and enhanced selectivity for Angstrom-scale separations using artificial water channel membranes
Yue-xiao Shen, Woochul Song, Daniel Ryan Barden, Tingwei Ren, Chao Lang, Hasin Feroz, Codey B. Henderson, Patrick O. Saboe, Daniel Tsai, Hengjing Yan, Peter J. Butler, Guillermo C. Bazan
SJR Q1Nature CommunicationsOA

Abstract Synthetic polymer membranes, critical to diverse energy-efficient separations, are subject to permeability-selectivity trade-offs that decrease their overall efficacy. These trade-offs are due to structural variations (e.g., broad pore size distributions) in both nonporous membranes used for Angstrom-scale separations and porous membranes used for nano to micron-scale separations. Biological membranes utilize well-defined Angstrom-scale pores to provide exceptional transport properties

Electrical and Electronic EngineeringEngineering
4
Article|142 citations·2003
Modeling alkane+perfluoroalkane interactions using all-atom potentials: Failure of the usual combining rules
Woochul Song, Peter J. Rossky, Mark Maroncelli
SJR Q1The Journal of Chemical Physics

We have tested the ability of the OPLS–AA models (optimized potentials for liquid simulations) of alkanes and perfluoroalkanes recently developed by Jorgensen and co-workers to represent the unusual mixing behavior of alkane+perfluoroalkane systems. We find that these all-atom Lennard-Jones (6-12)+Coulomb representations, together with the usual Lorentz–Berthelot combining rules, fail to reproduce the weaker-than-anticipated interactions between these two classes of molecules. Systematic disagre

Biomedical EngineeringEngineering
5
Article|120 citations·2000
Intermolecular Interactions and Local Density Augmentation in Supercritical Solvation: A Survey of Simulation and Experimental Results
Woochul Song, Ranjit Biswas, Mark Maroncelli
SJR Q2The Journal of Physical Chemistry A

Data from prior simulation and experimental studies (a total of 52 solute/solvent pairs) are collected and analyzed in an attempt to relate the extent of local density augmentation in supercritical fluids to the strength of intermolecular interactions. For this purpose, intermolecular potential functions consisting of pairwise additive atom−atom potentials, with parameters either taken from literature sources or derived from quantum chemical calculations, are constructed and tested against exper

Biomedical EngineeringEngineering
6
Article|109 citations·2021
Foldamer-based ultrapermeable and highly selective artificial water channels that exclude protons
Arundhati Roy, Jie Shen, Himanshu Joshi, Woochul Song, Yuming Tu, Ratul Chowdhury, Ruijuan Ye, Ning Li, Changliang Ren, Manish Kumar, Aleksei Aksimentiev, Huaqiang Zeng
SJR Q1Nature Nanotechnology
Electrical and Electronic EngineeringEngineering
7
Article|95 citations·2020
Rapid fabrication of precise high-throughput filters from membrane protein nanosheets
Yuming Tu, Woochul Song, Tingwei Ren, Yue-xiao Shen, Ratul Chowdhury, Prasangi Rajapaksha, Tyler E. Culp, Laxmicharan Samineni, Chao Lang, Alina Thokkadam, Drew Carson, Yuxuan Dai
SJR Q1Nature Materials
Water Science and TechnologyEnvironmental Science
8
Article|74 citations·2020
Prospective applications of nanometer-scale pore size biomimetic and bioinspired membranes
Yuming Tu, Laxmicharan Samineni, Tingwei Ren, A. Benjamin Schantz, Woochul Song, Siddharth Sharma, Manish Kumar
SJR Q1Journal of Membrane Science
Water Science and TechnologyEnvironmental Science
9
Article|58 citations·2019
Biomimetic Separation of Transport and Matrix Functions in Lamellar Block Copolymer Channel-Based Membranes
Chao Lang, Dan Ye, Woochul Song, Chenhao Yao, Yuming Tu, Clara Capparelli, Jacob A. LaNasa, Michael A. Hickner, Esther W. Gomez, Enrique D. Gomez, Robert J. Hickey, Manish Kumar
SJR Q1ACS Nano

Cell membranes control mass, energy, and information flow to and from the cell. In the cell membrane a lipid bilayer serves as the barrier layer, with highly efficient molecular machines, membrane proteins, serving as the transport elements. In this way, highly specialized transport properties are achieved by these composite materials by segregating the matrix function from the transport function using different components. For example, cell membranes containing aquaporin proteins can transport

Biomedical EngineeringEngineering
10
Article|57 citations·2019
Artificial water channels: toward and beyond desalination
Woochul Song, Manish Kumar
SJR Q1Current Opinion in Chemical Engineering
Biomedical EngineeringEngineering
11
Article|54 citations·2019
Solvent-non-solvent rapid-injection for preparing nanostructured materials from micelles to hydrogels
Chao Lang, Jacob A. LaNasa, Nyalaliska W. Utomo, Yifan Xu, M. J. Nelson, Woochul Song, Michael A. Hickner, Ralph H. Colby, Manish Kumar, Robert J. Hickey
SJR Q1Nature CommunicationsOA

Due to their distinctive molecular architecture, ABA triblock copolymers will undergo specific self-assembly processes into various nanostructures upon introduction into a B-block selective solvent. Although much of the focus in ABA triblock copolymer self-assembly has been on equilibrium nanostructures, little attention has been paid to the guiding principles of nanostructure formation during non-equilibrium processing conditions. Here we report a universal and quantitative method for fabricati

BiomaterialsMaterials Science
12
Article|53 citations·2018
Design Considerations for Artificial Water Channel–Based Membranes
Woochul Song, Chao Lang, Yue-xiao Shen, Manish Kumar
SJR Q1Annual Review of Materials Research

Aquaporins (AQPs) are naturally occurring water channel proteins. They can facilitate water molecule translocation across cellular membranes with exceptional selectivity and high permeability that are unmatched in synthetic membrane systems. These unique properties of AQPs have led to their use as functional elements in membranes in recent years. However, the intricate nature of AQPs and concerns regarding their stability and processability have encouraged researchers to develop synthetic channe

Biomedical EngineeringEngineering
13
Article|43 citations·2022
Fluorofoldamer-Based Salt- and Proton-Rejecting Artificial Water Channels for Ultrafast Water Transport
Jie Shen, Arundhati Roy, Himanshu Joshi, Laxmicharan Samineni, Ruijuan Ye, Yuming Tu, Woochul Song, Matthew J. Skiles, Manish Kumar, Aleksei Aksimentiev, Huaqiang Zeng
SJR Q1Nano Letters

Here, we report on a novel class of fluorofoldamer-based artificial water channels (AWCs) that combines excellent water transport rate and selectivity with structural simplicity and robustness. Produced by a facile one-pot copolymerization reaction under mild conditions, the best-performing channel (AWC <b>1</b>) is an n-C<sub>8</sub>H<sub>17</sub>-decorated foldamer nanotube with an average channel length of 2.8 nm and a pore diameter of 5.2 Å. AWC <b>1</b> demonstrates an ultrafast water condu

Electrical and Electronic EngineeringEngineering
14
Article|30 citations·2003
Local density augmentation in neat supercritical fluids: the role of electrostatic interactions
Woochul Song, Mark Maroncelli
SJR Q2Chemical Physics Letters
Biomedical EngineeringEngineering
15
Review|24 citations·2022
Beyond Aquaporins: Recent Developments in Artificial Water Channels
Woochul Song, Manish Kumar
SJR Q1Langmuir

A molecular scale understanding of the fast and selective water transport in biological water channels, aquaporins (AQPs), has inspired attempts to mimic its performance in synthetic structures. These synthetic structures, referred to as artificial water channels (AWCs), present several advantages over AQPs in applications. After over a decade of efforts, the unique transport properties of AQPs have been reproduced in AWCs. Further, recent developments have shown that the performance of benchmar

Biomedical EngineeringEngineering

Research Areas

Biomedical EngineeringElectrical and Electronic EngineeringWater Science and TechnologyMaterials ChemistryRenewable Energy, Sustainability and the EnvironmentMechanical Engineering

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