Ke, K., Sang, Z., Chen, X., Rohm, K., & Manas-Zloczower, I.(2021).Tuning Mechanical and Electrical Properties of Elastomer Composite with Hybrid Network via Graphene for Stretchable Strain Sensors.Advanced Engineering Materials.
Gong, X., Sang, Z., Guo, H., Ke, K., Manas-Zloczower, I., & Feke, D. L.(2021).Piezoresistive Strain Sensors Based on Psyllium-Carbon Nanostructure Skeletons.Composites B,209, 108610.
Ke, K., Sang, Z., & Manas-Zloczower, I.(2020).Hybrid Systems of 3D Carbon Nanostructures with Low Dimensional Fillers for Piezoresistive Sensors.Polymer Composites,41(2),468-477.
Ke, K., Sang, Z., & Manas-Zloczower, I.(2020).Hybrid systems of three-dimensional carbon nanostructures with low dimensional fillers for piezoresistive sensors.Polymer Composites,41(2),468-477.
Sang, Z., Ke, K., & Manas-Zloczower, I.(2019).Design Strategy for Porous Composites Aimed at Pressure Sensor Application.Small,15(6),1903487.
Sang, Z., Guo, H., Ke, K., & Manas-Zloczower, I.(2019).Effect of Solvent on Segregated Network Morphology in Elastomer Composites for Tunable Piezoresistivity.Macromolecular Materials and Engineering,304(9).
Sang, Z., Ke, K., & Manas-Zloczower, I.(2019).Effect of carbon nanotube morphology on properties in thermoplastic elastomer composites for strain sensors.Composites Part A: Applied Science and Manufacturing,121, 207-212.
Sang, Z., Ke, K., & Manas-Zloczower, I.(2019).Elastomer Composites with a Tailored Interface Network toward Tunable Piezoresistivity: Effect of Elastomer Particle Size.ACS Applied Polymer Materials,1(4),714-721.
Ke, K., Sang, Z., & Manas-Zloczower, I.(2019).Stretchable elastomer composites with segregated filler networks: effect of carbon nanofiller dimensionality.Nanoscale Advances,1(6),2337-2347.
Sang, Z., Ke, K., & Manas-Zloczower, I.(2018).Interface Design Strategy for the Fabrication of Highly Stretchable Strain Sensors.ACS Applied Materials & Interfaces,10(42),36483-36492.