1 |
Pectin nanogel formation via thiol-norbornene photo-click chemistry for transcutaneous antigen delivery Lee SY, Woo CH, Ki CS Journal of Industrial and Engineering Chemistry, 108, 159, 2022 |
2 |
β-Glucan hybridized poly(ethylene glycol) microgels for macrophage-targeted protein delivery Tae TH, Lee SR, Ki CS Journal of Industrial and Engineering Chemistry, 75, 69, 2019 |
3 |
Characterization of silk hydrogel formed with hydrolyzed silk fibroin-methacrylate via photopolymerization Kim HH, Kim JW, Choi J, Park YH, Ki CS Polymer, 153, 232, 2018 |
4 |
A facile fabrication method and the boosted adsorption and photodegradation activity of CuO nanoparticles synthesized using a silk fibroin template Kim JW, Ki CS, Um IC, Park YH Journal of Industrial and Engineering Chemistry, 56, 335, 2017 |
5 |
Effect of silk fibroin molecular weight on physical property of silk hydrogel Kim HH, Song DW, Kim MJ, Ryu SJ, Um IC, Ki CS, Park YH Polymer, 90, 26, 2016 |
6 |
Surface Coating of Hydroxyapatite on Silk Nanofiber through Biomineralization Using Ten Times Concentrated Simulated Body Fluid and the Evaluation for Bone Regeneration Lee MJ, Park JB, Kim HH, Ki CS, Park SY, Kim HJ, Park YH Macromolecular Research, 22(7), 710, 2014 |
7 |
Facile preparation of photodegradable hydrogels by photopolymerization Ki CS, Shih H, Lin CC Polymer, 54(8), 2115, 2013 |
8 |
피부 보습효과의 극대화를 위한 W/O 에멀젼 제조와 특성 평가 기창석, 신화영, 김정성, 정춘복, 채병근, 한상훈, 남개원 Applied Chemistry, 14(2), 45, 2010 |
9 |
Effect of RGDS and KRSR Peptides Immobilized on Silk Fibroin Nanofibrous Mats for Cell Adhesion and Proliferation Kim JW, Ki CS, Park YH, Kim HJ, Um IC Macromolecular Research, 18(5), 442, 2010 |
10 |
A Comparative Study on the Dielectric and Dynamic Mechanical Relaxation Behavior of the Regenerated Silk Fibroin Films Um IC, Kim TH, Kweon HY, Ki CS, Park YH Macromolecular Research, 17(10), 785, 2009 |