All-water-based electron-beam lithography using silk as a resist S Kim, B Marelli, MA Brenckle, AN Mitropoulos, ES Gil, K Tsioris, H Tao, ... Nature Nanotechnology 9 (4), 306-310, 2014 | 314 | 2014 |
Silk inverse opals S Kim, AN Mitropoulos, JD Spitzberg, H Tao, DL Kaplan, FG Omenetto Nature Photonics 6 (12), 818-823, 2012 | 288 | 2012 |
Skin-contact actuated single-electrode protein triboelectric nanogenerator and strain sensor for biomechanical energy harvesting and motion sensing N Gogurla, B Roy, JY Park, S Kim Nano Energy 62, 674-681, 2019 | 176 | 2019 |
Multifunctional and ultrathin electronic tattoo for on‐skin diagnostic and therapeutic applications N Gogurla, Y Kim, S Cho, J Kim, S Kim Advanced Materials 33 (24), 2008308, 2021 | 127 | 2021 |
Protein-based electronic skin akin to biological tissues M Jo, K Min, B Roy, S Kim, S Lee, JY Park, S Kim ACS Nano 12 (6), 5637-5645, 2018 | 124 | 2018 |
High-contrast infrared absorption spectroscopy via mass-produced coaxial zero-mode resonators with sub-10 nm gaps D Yoo, DA Mohr, F Vidal-Codina, A John-Herpin, M Jo, S Kim, J Matson, ... Nano Letters 18 (3), 1930-1936, 2018 | 124 | 2018 |
Self‐powered and imperceptible electronic tattoos based on silk protein nanofiber and carbon nanotubes for human–machine interfaces N Gogurla, S Kim Advanced Energy Materials 11 (29), 2100801, 2021 | 111 | 2021 |
A highly tunable and fully biocompatible silk nanoplasmonic optical sensor M Lee, H Jeon, S Kim Nano Letters 15 (5), 3358-3363, 2015 | 108 | 2015 |
Self-powered artificial skin made of engineered silk protein hydrogel N Gogurla, B Roy, S Kim Nano Energy 77, 105242, 2020 | 107 | 2020 |
Protein‐protein nanoimprinting of silk fibroin films MA Brenckle, H Tao, S Kim, M Paquette, DL Kaplan, FG Omenetto Advanced Materials 25 (17), 2409-2414, 2013 | 103 | 2013 |
Low-threshold blue lasing from silk fibroin thin films S Toffanin, S Kim, S Cavallini, M Natali, V Benfenati, JJ Amsden, ... Applied Physics Letters 101 (9), 2012 | 96 | 2012 |
Deformable and conformal silk hydrogel inverse opal K Min, S Kim, S Kim Proceedings of the National Academy of Sciences 114 (24), 6185-6190, 2017 | 91 | 2017 |
Silk protein nanofibers for highly efficient, eco-friendly, optically translucent, and multifunctional air filters K Min, S Kim, S Kim Scientific Reports 8 (1), 1-10, 2018 | 85 | 2018 |
Chemically tunable, biocompatible, and cost-effective metal–insulator–metal resonators using silk protein and ultrathin silver films H Kwon, S Kim ACS Photonics 2 (12), 1675-1680, 2015 | 82 | 2015 |
Synthesis of silk fibroin micro-and submicron spheres using a co-flow capillary device. AN Mitropoulos, G Perotto, S Kim, B Marelli, DL Kaplan, FG Omenetto Advanced Materials (Deerfield Beach, Fla.) 26 (7), 1105-1110, 2013 | 80 | 2013 |
Eco-friendly photolithography using water-developable pure silk fibroin J Park, SG Lee, B Marelli, M Lee, T Kim, HK Oh, H Jeon, FG Omenetto, ... RSC Advances 6 (45), 39330-39334, 2016 | 65 | 2016 |
A fully biocompatible single-mode distributed feedback laser Y Choi, H Jeon, S Kim Lab on a Chip 15 (3), 642-645, 2015 | 58 | 2015 |
Fiber-coupled surface-emitting photonic crystal band edge laser for biochemical sensor applications S Kim, J Lee, H Jeon, HJ Kim Applied Physics Letters 94 (13), 2009 | 53 | 2009 |
Silk protein based hybrid photonic-plasmonic crystal S Kim, AN Mitropoulos, JD Spitzberg, DL Kaplan, FG Omenetto Optics Express 21 (7), 8897-8903, 2013 | 43 | 2013 |
Fluorescence amplification using colloidal photonic crystal platform in sensing dye-labeled deoxyribonucleic acids HJ Kim, S Kim, H Jeon, J Ma, SH Choi, S Lee, C Ko, W Park Sensors and Actuators B: Chemical 124 (1), 147-152, 2007 | 42 | 2007 |