표면 설계 및 생산 연구실
20. Pang, C.*, Kim, J.-K.*, Wu, Y.*, Wang, M. Y., Yu, H., & Sitti, M. (2023) Bioinspired Microstructured Adhesives with Facile and Fast Switchability for Part Manipulation in Dry and Wet Conditions. Advanced Functional Materials, DOI: 10.1002/adfm.202303116. 19. Lee, Y.-W.*, Kim, J.-K.*, Bozuyuk, U., Dogan, N.O., Khan, M.T.A., Shiva, A., Wild, A.-M., & Sitti, M. (2023) Multifunctional 3D-Printed Pollen Grain-Inspired Hydrogel Microrobots for On-Demand Anchoring and Cargo Delivery. Advanced Materials, 35(10), 2209812. 18. Kim, J.-K.*, Krishna, N.*, Wu, Y.*, Ko, J., Shiva, A., & Sitti, M. (2022) Enhanced Flexible Mold Lifetime for Roll-to-Roll Scaled-Up Manufacturing of Adhesive Complex Microstructures. Advanced Materials, 35(2), 2207257. 17. Wu, Y.*, Dong, X.*, Kim, J.-K.*, Wang, C. & Sitti, M. (2022). Wireless soft millirobots for climbing three-dimensional surfaces in confined spaces. Science Advances, 8(21), eabn3431. 16. Kim, J.-K. & Varenberg, M. (2021). Amplification factor in shear-activated adhesives: effect of elasticity. Soft Matter, 17, 9087-9093. 15. Voigt, D.*, Kim, J.-K.*, Jantschke, A.* & Varenberg, M.* (2020). Robust, universal, and persistent: bud secretion adhesion in horse-chestnut trees. Scientific Reports, 10, 16925. 14. Kim, J.-K. & Varenberg, M. (2020). Polyurethane shear-activated adhesives: effect of counterface chemistry. ACS Applied Polymer Materials, 2(7), 2994-3000. 13. Kim, J.-K. & Varenberg, M. (2020). Drawing-based manufacturing for shear-induced dry adhesion. ACS Applied Materials & Interfaces, 12(17), 20075-20083. 12. Kim, J.-K. & Varenberg, M. (2019). Contact splitting in dry adhesion and friction: reducing the influence of roughness. Beilstein Journal of Nanotechnology, 10(1), 1-8. 11. Oh, D.-S., Kang, K.-H., Kim, H.-J., Kim, J.-K., Won, M.-S. & Kim, D.-E. (2018). Tribological characteristics of micro-ball bearing with V-shaped grooves coated with ultra-thin protective layers. Tribology International, 119, 481-490. 10. Kim, J.-K. & Varenberg, M. (2017). Biomimetic wall-shaped adhesive microstructure for shear-induced attachment: the effects of pulling angle and preliminary displacement. Journal of the Royal Society Interface, 14(137), 20170832. 9. Nieto, A., Jiang, L., Kim, J.-K., Kim, D.-E. & Schoenung, J. M. (2017). Synthesis and Multi Scale Tribological Behavior of WC-Co/Nanodiamond Nanocomposites. Scientific Reports, 7, 7060. 8. Lee, K., Lee, J., Kim, G., Kim, Y., Kang, S., Cho, S., Kim, S.-G., Kim, J.-K., Lee, W., Kim, D.-E., Kang, S., Kim, D., Lee, T. & Shim, W. (2017). Rough‐Surface‐Enabled Capacitive Pressure Sensors with 3D Touch Capability. Small, 13, 1700368. 7. Nieto, A., Kim, J.-K., Penkov, O. V., Kim, D.-E. & Schoenung, J. M. (2017). Elevated Temperature Wear Behavior of Thermally Sprayed WC-Co/Nanodiamond Composite Coatings. Surface and Coatings Technology, 315, 283-293. 6. Kang, S., Lee, J., Lee, S., Kim, S., Kim, J.-K., Algadi, H., Al-Sayari, S., Kim, D.-E. & Lee. T. (2016). Highly Sensitive Pressure Sensor Based on Bioinspired Porous Structure for Real‐Time Tactile Sensing. Advanced Electronic Materials, 2(12), 1600356. 5. Nemati, N., Emamy, M., Penkov, O. V., Kim, J.-K., & Kim, D.-E. (2016). Mechanical and High Temperature Wear Properties of Extruded Al Composite Reinforced with Al13Fe4 CMA Nanoparticles. Materials & Design, 90(15), 532-544. 4. Nemati, N., Emamy, M., Yau, S., Kim, J.-K., & Kim, D.-E. (2016). High Temperature Friction and Wear Properties of Graphene Oxide/Polytetrafluoroethylene Composite Coatings Deposited on Stainless Steel. RSC Advances, 6(7), 5977-5987. 3. Kim, J.-K., Yoo, S.-S., Nemati, N., & Kim, D.-E. (2015). Frictional Characteristics of Sub-100-μm Borosilicate Glass Balls for Actuator Applications. Journal of Microelectromechanical Systems, 24(6), 2161-2169. 2. Kim, J.-K., Xavier, F. A., & Kim, D.-E. (2015). Tribological Properties of Twin Wire Arc Spray Coated Aluminum Cylinder Liner. Materials & Design, 84, 231-237. 1. Oh, D.-S., Kim, H.-J., Kim, J.-K., & Kim, D.-E. (2015). Friction and Deformation Behaviors of~ 60-μm Stainless Steel Micro-balls for Application in Small Precision Devices. Tribology Letters, 59(3), 1-10. |