Total 1717, list per page:
- A high aspect ratio serpentine structure for use as a strain-insensitive, stretchable transparent conductor
Small / 1613-6829 / 2017 / Jung, Hee Tae / KINC > NT for Climate Change
- Universal Method for Creating Hierarchical Wrinkles on Thin-Film Surfaces
ACS Applied Materials & Interfaces / Vol. 10(1), 1347-1355 / 2017 / Jung, Hee Tae / KINC > NT for Climate Change
- Selective Molecular Separation on Ti3C2Tx-Graphene Oxide Membranes during Pressure-Driven Filtration: Comparison with Graphene Oxide and Mxenes
ACS Applied Materials & Interfaces / Vol. 9(51), 44687-44694 / 2017 / Jung, Hee Tae / KINC > NT for Climate Change
- One Dimensional Building Block for Molecular Separation: Laminated Graphitic Nanoribbons
Nanoscale / Vol. 9(48) / 2017 / Jung, Hee Tae / KINC > NT for Climate Change
- Highly Periodic Metal Dichalcogenide Nanostructures with Complex Shapes, High Resolution, and High Aspect Ratios
Advanced Functional Materials / Vol. 27(46) / 2017 / Jung, Hee Tae / KINC > NT for Climate Change
- Amine-functionalized graphene/CdS composite for photocatalytic reduction of CO2
ACS Catalysis / Vol. 7(10), 7064-7069 / 2017 / Jung, Hee Tae / KINC > NT for Climate Change
- Tunable Chemical Sensing Performance of Black Phosphorus by Controlled Functionalization with Noble Metals
Chemistry of Materials / Vol. 29(17), 7197-7205 / 2017 / Jung, Hee Tae / KINC > NT for Climate Change
- An ultrasensitive, visco-poroelastic artificial mechanotransducer skin inspired by Piezo2 protein in mammalian Merkel cells
Advanced Materials / Vol. 29(13) / 2017 / Jung, Hee Tae / KINC > NT for Climate Change
- A master manipulator with a remote-center-of-motion kinematic structure for a minimally invasive robotic surgical system
International Journal of Medical Robotics and Computer Assisted Surgery / Vol. 14(1) / 2017 / Kwon, Dong Soo / KIR > AI for Cooperative Robots
- Self-Powered Fall Detection System using Pressure Sensing Triboelectric Nanogenerator
Nanoenergy / Vol. 41, 139-147 / 2017 / Kwon, Dong Soo / KIR > AI for Cooperative Robots