Publications

The pleasure of the text

SCIE papers

[] "Coagulation engineering of surfactant-based wet spinning of carbon nanotube fibers"

Yun Ho Jeong, Jaegyun Im, Dong-Myeong Lee, Min Chan Kim, Daehan Oh, Jeonghyeon Son, Seunggyu Park, Kyu Hyun, Beomjin Jeong, and Jaegeun Lee

Carbon Letters,  in press (2024)

[49] "Biomedical applications of CNT-based fibers"

Yun Ho Jeong, Mina Kwon, Sangsoo Shin, Jaegeun Lee*, and Ki Su Kim*

Biosensors, vol. 14, p. 137 (2024)

[48] "Wet spinning of multi-walled carbon nanotube fibers"

Jaegyun Im, Yun Ho Jeong, Min Chan Kim, Daehan Oh, Jeonghyun Son, Kyu Hyun, Beomjin Jeong, Seungki Hong, and Jaegeun Lee*

Carbon, vol. 216, p. 118532 (2024)

[47] "Bayesian optimization of wet-impregnated Co-Mo/Al2O3 catalyst for maximizing the yield of carbon nanotube synthesis"

Sangsoo Shin†, Hyeongyun Song†, Yeon Su Shin, Jaegeun Lee*, and Tae Hoon Seo*

Nanomaterials, vol. 14, p. 75 (2024)

[46] "A Graphene-Based Polymer-Dispersed Liquid Crystal Device Enabled through a Water-Induced Interface Cleaning Process" 

Eun Mi Kim, Su Jin Kim, Go Bong Choi, Jaegeun Lee, Min Mo Koo, Jaewoong Kim, Young Won Kim, Jongho Lee, Jin Hyeok Kim*, and Tae Hoon Seo*

Nanomaterials, vol. 13, p. 2309 (2023)

[45] "Statistical analysis of the synthesis of carbon nanotubes using wet-impregnated catalysts for improved robustness"

Hyeongyun Song, Dong Hwan Kim, Cheol Woo Park, Jungho Jae, Seungki Hong, and Jaegeun Lee*

Carbon Letters, vol. 33, pp. 921–929 (2023)

[44] "Engineered multi-scale roughness of carbon nanofiller-embedded 3D printed spacers for membrane distillation"

Seongeom Jeong, Boram Gu*, Subi Choi, Suk-kyun Ahn, Jaegeun Lee, Jieun Lee, and Sanghyun Jeong*

Water Research, vol. 231, p. 119649 (2023)

[43] "A lead-free piezoelectric fiber generator with a high energy conversion constant material"

Kyung-Bum Kim* and Jaegeun Lee

Energies, vol. 15, p. 6787 (2022)

[42] "Development of carbon nanotube/silicone pad for improved performance of electromyostimulation training"

Myeongcheol Kim, Jaegyun Im, Junsul Park, Kyung-Bum Kim*, and Jaegeun Lee*

Energies, vol. 15, p. 6681 (2022)

[41] "Reusable carbon nanotube-embedded polystyrene/polyacrylonitrile nanofibrous sorbent for managing oil spills"

Siyoung Byun, Jieun Lee*, Jaegeun Lee, and Sanghyun Jeong*

Desalination, vol. 537, p. 115865 (2022)

[40] "Analysis of dispersion of carbon nanotubes in m-cresol"

Jaegyun Im, Dong-Myeong Lee, and Jaegeun Lee*

Materials, vol. 15, p. 3777 (2022)

[39] "Investigation of shear-induced rearrangement of carbon nanotube bundles using Taylor-Couette flow"

Haemin Lee, Jinhwan Park, Hyunjung Cho, Jaegeun Lee*, and Kun-Hong Lee*

RSC Advances, vol. 11, pp. 38152-38160 (2021)

[38] "Boosting catalytic lifetime in chemical vapor deposition of carbon nanotubes by rapid thermal pretreatment of alumina-supported metal nanocatalyst"

Jaegeun Lee†, Golnaz Najaf Tomaraei†, Moataz Abdulhafez, and Mostafa Bedewy*

Chemistry of Materials, vol. 33, pp. 6277–6289 (2021)

[37]  "Estimating carbon nanotube length from isotropic cloud point of carbon nanotube/chlorosulfonic acid solutions"

 Haemin Lee, Hyunjung Cho, Sung-Hyun Lee, Dong-Myeong Lee, Eugene Oh, Jaegeun Lee*, and Kun-Hong Lee*

Carbon, vol. 182, pp. 185-193 (2021)

[36] “Gas barrier performance of hexagonal boron nitride monolayers grown on copper foils with electrochemical polishing”

Chil-Hyoung Lee, Go Bong Choi, Eun Mi Kim, Jongho Lee, Jaegeun Lee, Hi Gyu Moon, Myung Jong Kim, Yoong Ahm Kim*, and Tae Hoon Seo*

Applied Sciences vol. 11, p. 4599 (2021)

[35] "Determining the isotropic cloud point of carbon nanotube/chlorosulfonic acid solution using UV-vis-NIR absorbance saturation behavior"

Haemin Lee, Dong-Myeong Lee, Cheol-Hun Lee, Jaegeun Lee*, and Kun-Hong Lee*

Carbon vol. 173, pp. 782-791 (2021)

[34] "Improving mechanical and physical properties of ultra-thick carbon nanotube fiber by fast swelling and stretching process"

Dong-Myeong Lee, Junbeom Park, Jaegeun Lee, Sung-Hyun Lee, Shin-Hyun Kim*, Seung Min Kim*, and Hyeon Su Jeong*

Carbon vol. 172, pp. 733-741 (2021)

Before PNU (33 papers including 16 main-authored papers)

[33]  “Decoupling catalyst dewetting, gas decomposition, and surface reactions in carbon nanotube forest growth reveals dependence of density on nucleation temperature”

Jaegeun Lee†, Moataz Abdulhafez†, and Mostafa Bedewy*

 Journal of Physical Chemistry C, vol. 123, pp. 28726-28738 (2019)

[32] “Multizone rapid thermal processing to overcome challenges in carbon nanotube manufacturing by chemical vapor deposition”

Jaegeun Lee, Moataz Abdulhafez, and Mostafa Bedewy*

Journal of Manufacturing Science and Engineering-Transactions of the ASME, vol. 141, p. 091006 (2019)

[31] “Direct spinning and densification method for high-performance carbon nanotube fibers”

Jaegeun Lee†, Dong-Myeong Lee†, Yeonsu Jung†, Junbeom Park, Hun Su Lee, Young-Kwan Kim, Chong Rae Park*, Hyeon Su Jeong*, and Seung Min Kim*

Nature Communications, vol. 10, p. 2962 (2019)

2019년 KIST 대표 연구성과 9선 선정, 2020년 국가연구개발 우수 연구성과 100선 선정

[30]  “Data analytics enables significant improvement of robustness in chemical vapor deposition of carbon nanotubes based on vacuum baking”

Jaegeun Lee, Moataz Abdulhafez, and Mostafa Bedewy*

Industrial & Engineering Chemistry Research, vol. 58, pp. 11999-12009 (2019)

[29] “Rationally designed catalyst layer toward “immortal” growth of carbon nanotube forest: Fe ion implanted substrates”

Cheol-Hun Lee†, Jaegeun Lee†, Junbeom Park, Eunyoung Lee, Seung Min Kim*, and Kun-Hong Lee*

Carbon, vol. 152, pp. 482-488 (2019)

[28] “Mathematical model for the dynamic mechanical behavior of carbon nanotube yarn in analogy with hierarchically structured bio-material”

Junbeom Park, Jaegeun Lee, Dong-Myeong Lee, Sung-Hyun Lee, Hyeon Su Jeong, Kun-Hong Lee, and Seung Min Kim*

Carbon, vol. 152, pp. 151-158 (2019)

[27] “Multi-walled carbon nanotube forests covered with atomic-layer-deposited ruthenium layers for high-performance counter electrodes of dye-sensitized solar cells”

Dong-Jin Yun, Hyemin Ra, Jung-Min Kim, Eugene Oh, Jaegeun Lee, Myoung-Ho Jeong, Yong Jin Jeong, Hansol Yang, and Jaeyoung Jang*

Organic Electronics, vol. 65, pp. 349-356 (2019)

[26] “Synthesis Mechanism of Carbon Nanotube Fibers using Reactor Design Principles”

Sung-Hyun Lee*, Hye-Rim Kim, Haemin Lee, Jinwoo Lee, Cheol-Hun Lee, Jaegeun Lee, Junbeom Park, and Kun-Hong Lee*

Chemical Engineering Science, vol. 192, pp. 655-664 (2018)

[25] “Estimation of degree of polymerization of poly-acrylonitrile-grafted carbon nanotubes using Guinier plot of small angle x-ray scattering”

Hyunjung Cho, Kyeong Sik Jin, Jaegeun Lee*, and Kun-Hong Lee*

Nanotechnology, vol. 29, p. 275708 (2018)

[24] “Synthesis of carbon nanotube fibers from carbon precursors with low decomposition temperatures using a direct spinning process”

Sung-Hyun Lee*, Hye-Rim Kim, Taeseon Lee, Haemin Lee, Jinwoo Lee, Jaegeun Lee, Junbeom Park, and Kun-Hong Lee*

Carbon, vol. 124, pp. 219-227 (2017)

[23] “Significantly Increased Solubility of Carbon Nanotubes in Superacid by Oxidation and Their Assembly into High-Performance Fibers”

Jaegeun Lee†, Dong-Myeong Lee†, Young-Kwan Kim, Hyeon Su Jeong*, and Seung Min Kim*

Small, vol. 13, p. 1701131 (2017)

2017년 KIST 대표 연구성과 9선 선정

[22] “Evolution of implanted Fe ions in SiO2/Si wafer into uniformly sized catalyst particles for carbon nanotube forest growth”

Cheol-Hun Lee†, Jaegeun Lee†, Sunmog Yeo, Sung-Hyun Lee, Teawon Kim, Hyeon-Gu Cha, Youngmoo Eun, Hyun Jin Park, Seung Min Kim*, and Kun-Hong Lee*

Carbon, vol. 123, pp. 122-128 (2017)

[21] “Quantitative analysis of carbon nanotube cross-linking reactions”

  Yong-O Im, Sung-Hyun Lee, Sung-Uk Yu, Jaegeun Lee*, and Kun-Hong Lee

Korean Journal of Chemical Engineering, vol. 34, pp. 898-902 (2017)

[20] “Accurate Measurement of Specific Tensile Strength of Carbon Nanotube Fibers with Hierarchical Structures by Vibroscopic method”

Junbeom Park, Sung-Hyun Lee, Jaegeun Lee, Dong-Myeong Lee, Hayoung Yu, Hyeon Su Jeong, Seung Min Kim*, and Kun-Hong Lee*

RSC Advances, vol. 7, pp. 8575-8580 (2017)

[19] “Utilization of carboxylic functional groups generated during purification of carbon nanotube fiber for its strength improvement”

 Yong-O Im, Sung-Hyun Lee, Teawon Kim, Junbeom Park, Jaegeun Lee*, and Kun-Hong Lee*

Applied Surface Science, vol. 392, pp. 342-349 (2017)

[18] “High-strength carbon nanotube/carbon composite fibers via chemical vapor infiltration”

Jaegeun Lee†, Teawon Kim†, Yeonsu Jung, Kihoon Jung, Junbeom Park, Dong-Myeong Lee, Hyeon Su Jeong, Jun Yeon Hwang, Chong Rae Park, Kun-Hong Lee*, and Seung Min Kim*

Nanoscale, vol. 8, pp. 18972-18979 (2016)

[17] “Facile conversion of activated carbon to battery anode material using microwave graphitization”

Teawon Kim†, Changshin Jo†, Won-Gwang Lim, Jaegeun Lee, Jinwoo Lee*, and Kun-Hong Lee*

Carbon, vol. 104, pp. 106-111 (2016)

[16] “Effects of SiO2 sub-supporting layer on the structure of Al2O3 supporting layer, formation of Fe catalyst particles, and growth of carbon nanotube forests”

Jaegeun Lee, Cheol Hun Lee, Junbeom Park, Dong-Myeong Lee, Kun-Hong Lee, Sae Byeok Jo, Kilwon Cho, Benji Maruyama, and Seung Min Kim*

RSC Advances, vol. 6, pp. 68424-68432 (2016)

[15] “Synthesis of carbon nanotube fibers using the direct spinning process based on Design of Experiment (DOE)”

Sung-Hyun Lee, Junbeom Park, Hye-Rim Kim, Taeseon Lee, Jaegeun Lee, Yong-O Im, Cheol-Hun Lee, Hyunjung Cho, Hyeseon Lee, Chi-Hyuck Jun, Yu-Chan Ahn, In-Beum Lee, and Kun-Hong Lee*

Carbon, vol. 100, pp. 647-655 (2016)

[14] “Full graphitization of amorphous carbon by microwave heating”

Teawon Kim, Jaegeun Lee, and Kun-Hong Lee*

RSC Advances, vol. 6, pp. 24667-24674 (2016)

[13] “Improving the Tensile Strength of Carbon Nanotube Yarn via One-Step Double [2+1] Cycloadditions”

HeeJin Kim†, Jaegeun Lee†, Byungrak Park, Alum Jung, Junbeom Park, Jeong-Hoon Sa, Teawon Kim, Woonbong Hwang, and Kun-Hong Lee*

Korean Journal of Chemical Engineering, vol. 33, pp. 299-304 (2016)

[12] “Direct observation of morphological evolution of a catalyst during carbon nanotube forest growth: new insights into growth and growth termination”

Seojeong Jeong†, Jaegeun Lee†, Hwan-Chul Kim, Jun Yeon Hwang, Bon-Cheol Ku, Dmitri N. Zakharov, Benji Maruyama, Eric A. Stach, and Seung Min Kim*

Nanoscale, vol. 8, pp. 2055-2062 (2016) 

[11] “The Influence of Boundary Layer on the Growth Kinetics of Carbon Nanotube Forests”

Jaegeun Lee, Eugene Oh, Teawon Kim, Jeong-Hoon Sa, Sung-Hyun Lee, Junbeom Park, Dustin Moon, In Seok Kang, Myung Jong Kim, Seung Min Kim, and Kun-Hong Lee*

Carbon, vol. 93, pp. 217-225 (2015).

[10] “Synthesis of high-quality carbon nanotube fibers by controlling the effects of sulfur on the catalyst agglomeration during the direct spinning process”

Sung-Hyun Lee, Junbeom Park, Hye-Rim Kim, Jaegeun Lee, and Kun-Hong Lee*

RSC Advances, vol. 5, pp. 41894-41900 (2015)

[9] “The synthesis of single-walled carbon nanotubes with narrow diameter distribution using polymerized hemoglobin”

Hye-Jin Kim, Sang Woo Seo, Jaegeun Lee, Gyoo Yeol Jung, and Kun-Hong Lee*

Carbon, vol. 69, pp. 588-594 (2014)

[8] “Microwave heating of carbon-based solid materials”

Teawon Kim, Jaegeun Lee, and Kun-Hong Lee*

Carbon Letters, vol. 15, pp. 15-24 (2014)

[7] “The reason for an upper limit to the height of spinnable carbon nanotube forests”

Jaegeun Lee, Eugene Oh, Hye-Jin Kim, Seungho Cho, Teawon Kim, Sunghyun Lee, Junbeom Park, Hee Jin Kim, and Kun-Hong Lee*

Journal of Materials Science, vol. 48, pp. 6897-6904 (2013)

[6] “Turning refuse plastic into multi-walled carbon nanotube forest”

Eugene Oh, Jaegeun Lee, Seung-Ho Jung, Seungho Cho, Hye-Jin Kim, Sung-Hyun Lee, Kun-Hong Lee*, Kyong-Hwa Song, Chi-Hoon Choi, and Do Suck Han

Science and Technology of Advanced Materials, vol. 13, p. 025004 (2012)

[5] “Synthesis of single-walled carbon nanotubes using hemoglobin-based iron catalyst”

Hye-Jin Kim, Eugene Oh, Jaegeun Lee, and Kun-Hong Lee*

Carbon, vol. 50, pp. 722-726 (2012)

[4] ““Continuous” Method for the Fast Screening of Thermodynamic Promoters of Gas Hydrates Using a Quartz Crystal Microbalance”

Bo Ram Lee, Jeong-Hoon Sa, Da-Hye Park, Seungho Cho, Jaegeun Lee, Hye-Jin Kim, Eugene Oh, Sangmin Jeon, Ju Dong Lee, and Kun-Hong Lee*

Energy & Fuels, vol. 26, pp 767-772 (2012)

[3] “Synthesis of carbon nanotubes with catalytic iron-containing proteins”

Hye-Jin Kim, Eugene Oh, Jaegeun Lee, Dae-Seob Shim, and Kun-Hong Lee*

Carbon, vol. 49, pp. 3717-3722 (2011)

[2] “Selective synthesis of SiC and SiOx nanowires by direct microwave irradiation”

Eugene Oh, Seung-Ho Jung, Jaegeun Lee, Seungho Cho, Hye-Jin Kim, Bo-Ram Lee, Kun-Hong Lee*, Kyong-Hwa Song, Chi-Hoon Choi, and Do-Suck Han

Japanese Journal of Applied Physics, vol. 50, p. 025001 (2011)

[1] “Formation of Amorphous Zinc Citrate Spheres and Their Conversion to Crystalline ZnO Nanostructures”

Seungho Cho, Ji-Wook Jang, Alum Jung, Sung-Hyun Lee, Jaegeun Lee, Jae Sung Lee, and Kun-Hong Lee*

Langmuir, vol. 27, pp. 371-378 (2011)

Non-SCIE papers

[4] "Suppression of Catalyst Diffusion Into Alumina Support in Dynamic Chemical Vapor Deposition of Carbon Nanotube"

Golnaz Tomaraei, Jaegeun Lee, Seung Min Kim, Moataz Abdulhafez, Mostafa Bedewy*

International Manufacturing Science and Engineering Conference, MSEC2023-104979, V002T08A004 (2023)

[3] "Optimizing platinum-free counter electrodes for dye-sensitized solar cells: Multiwalled carbon nanotube forests covered with ruthenium layers"

Dong-Jin Yun∗, Jaegeun Lee, Eugene Oh, Mingi Cho, Seong Heon Kim, Hyemin Ra, Jung-Min Kim, Seunghyup Lee, and Sung-Hoon Park∗

Nano-Structures & Nano-Objects, vol. 35, p. 101015 (2023)

[2] "Reducing Variability in Chemical Vapor Deposition of Carbon Nanotubes Based on Gas Purification and Sample Support Redesign"

Golnaz Tomaraei, Jaegeun Lee, Moataz Abdulhafez, and Mostafa Bedewy*

Journal of Micro and Nano-Manufacturing, vol. 9, p. 011002 (2021)

[1] “In situ measurement of carbon nanotube growth kinetics in a rapid thermal chemical vapor deposition reactor with multizone infrared heating”

Moataz Abdulhafez, Jaegeun Lee, and Mostafa Bedewy*

Journal of Micro and Nano-Manufacturing, vol. 8, p. 010902 (2020)