Skip to main content

Pyung-Su Lee

Pohang University of Science and Technology · Materials Science

About the Lab

Professor Pyung-Su Lee's research lab specializes in experimental plasma physics, particularly in the development and application of advanced diagnostic techniques for measuring ion temperature in fusion plasmas using far-infrared collective scattering. The lab also explores the mechanical and physical properties of bio-based materials, such as tropical hardwoods treated with preservatives, and investigates the nanomechanical behavior of nanostructured materials like nanohoneycomb architectures. These diverse research directions reflect a strong focus on both fundamental physical phenomena and practical applications in energy and materials science.

plasma diagnosticsion temperaturenanohoneycombwood preservationmechanical properties

Research Overview

Papers
5
Total Citations
28
Papers (5y)
5
Primary Field
Materials Science

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
5total
1985
2006
2007
2024
Citations per year (5y)
28total
1985200620072024

Selected Papers

5
1
Article|10 citations·2006
Measuring the tensile and bending properties of nanohoneycomb structures
J. H. Jeon, Dukhyun Choi, P. S. Lee, K. H. Lee, Hyungjun Park, Woonbong Hwang
SJR Q2Mechanics of Composite Materials
Materials ChemistryMaterials Science
2
Article|7 citations·2007
Bending fatigue characteristics of nanohoneycomb structures
J. H. Jeon, P.S. Lee, K.H. Lee, H.C. Park, Woonbong Hwang
SJR Q1Composite Structures
Materials ChemistryMaterials Science
3
Article|6 citations·1985
Tokamak ion temperature determination via cw far-infrared laser scattering
H. Park, P. S. Lee, W. A. Peebles, Neville C. Luhmann
SJR Q2Review of Scientific Instruments

A successful proof-of-principle experimental determination of ion temperature in a tokamak plasma via cw far-infrared (FIR) collective laser scattering from ion Bernstein waves is reported. The Bernstein waves are excited via mode conversion of an externally launched fast Alfven wave at the second-harmonic cyclotron layer. A fit of the experimentally determined ion Bernstein wave dispersion to the temperature-dependent theoretical dispersion yields the local ion temperature. Partial ion temperat

Nuclear and High Energy PhysicsPhysics and Astronomy
4
Article|5 citations·2024
Physical and Mechanical Properties of Light Red Meranti Treated with Boron Preservatives
Man Djun Lee, Ridge Wei Cheong TANG, Zeno Michael, M. Khairulmaini, Azmi Roslan, Ahmad Faidzal Khodori, Hazim Sharudin, P.S. Lee
SJR Q2Journal of the Korean Wood Science and TechnologyOA

This study investigates the influence of varying concentrations of boric acid (BA) preservative on the physical and mechanical properties of light red meranti (LRM) found in Sarawak. LRM or Shorea leprosula samples were treated with various concentrations of BA via the dip diffusion method using American Society for Testing and Materials (ASTM) standards. The physical property, particularly the retention rate and mechanical properties, bending strength, modulus of elasticity (MOE), tensile and c

Polymers and PlasticsMaterials Science
5
Article|0 citations·2007
Young’s Modulus of Nanohoneycomb Structures According to the Porosity
Dukhyun Choi, Chi‐Wan Lee, P.S. Lee, Junghyun Lee, Woon Bong Hwang, Kun Hong Lee, Hoon Cheol Park
SJR Q4Key engineering materials

Young’s modulus of nanohoneycomb structures in the vertical direction relative to the pore (generally along the beam length) is measured according to the porosity from bending tests in atomic force microscopy (AFM). The pore diameters of the nanohoneycomb structures are from about 30 to 60 nm. To determine the Young’s modulus of the nanohoneycomb structures, the area moment of inertia of the nanohoneycomb structure is determined according to the arrangement of the pores. The area moment of inert

Materials ChemistryMaterials Science

Research Areas

Materials ChemistryNuclear and High Energy PhysicsPolymers and Plastics

Dive deeper into Pyung-Su Lee's research on Nubint

Open this lab's papers in the app to read with AI, summarize, and cite in your writing.