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Total result(s) found: 14
  • Xu, X. ,  Zhou, J. ,  Xin, Y. ,  Lubineau, G. ,  Ma, Q. ,  Jiang, L. , Alcohol Recognition by Flexible, Transparent and Highly Sensitive Graphene-Based Thin-Film Sensors, Scientific Reports, Volume 7, Issue 1, 1 December 2017.
Keywords:
Chemical sensors , Electronic properties and devices
  • Lubineau, G. ,  Sulaimani, A. ,  EI Yagoubi, J. ,  Mulle, M. ,  Verdu, J. , Hysteresis in the relation between moisture uptake and electrical conductivity in neat epoxy, Polymer Degradation and Stability, Volume 141, July 2017, Pages 54-57. 
Keywords:
Diffusion, Electrical properties, Epoxy, Hydrolysis, Moisture sorption
  • Tai, Y., Kanti Bera, T., Yang, Z., Lubineau, G. Leveraging a temperature-tunable, scale-like microstructure to produce multimodal, supersensitive sensors, Nanoscale, Volume 9, Issue 23, 21 June 2017, Pages 7888-7894


Keywords:
Carbon, Microchannels, Thermal expansion,Formation and evolutions
  • X Xu, J Zhou, G Lubineau, High stability of few layer graphene nanoplatelets in various solvents, IOP Conference Series: Materials Science and Engineering , Volume 191, conference1, 2017
Keywords:
Dispersion of few-layer graphene nanoplatelets (GNPs)
  • Saleh, M.N., Wang, Y., Yudhanto, A., Potluri, P., Lubineau, G., Soutis, C., Investigating the Potential of Using Off-Axis 3D Woven Composites in Composite Joints’ Applications, Applied Composite Materials, Volume 24, Issue 2, 1 April 2017, Pages 377-396.
Keywords:
Damage mechanics, Digital image correlation (DIC), Three-dimensional (3D) woven composites, X-ray computed tomography (CT)
  • ​​B. Wang, B. Pan, R. Tao and G. Lubineau​, Systematic errors in digital volume correlation due to the self-heating effect of a laboratory x-ray CT scanner.  Measurement Science and Technology 28 (5), 2017​
Keywords:
Digital volume correlation, x-ray CT, self-heating effect
  • Yanlong Tai, Tushar Kanti Bera, Gilles Lubineau, Zhenguo Yang. Combining the Converse Humidity/Resistance Response Behaviors of RGO Films for Flexible Logic Devices, Journal of Materials Chemistry C, 2017
Keywords:
Resistance Response Behaviors
  • Ditho Pulungan, Gilles Lubineau, Arief Yudhanto, Recep Yaldiz, Warden Schijve. Identifying design parameters controlling damage behaviors of continuous fiber-reinforced thermoplastic composites using micromechanics as a virtual testing tool. International Journal of Solids and Structures, Volume 117, 15 June 2017, Pages 177-190​
Keywords:
Thermoplastic composites; Micromechanics; RVE modeling; Transverse tensile strength; Elastic plastic damage model
  • ​Khaled Almuhammadi, Tushar Kanti Bera, Gilles Lubineau. Electrical impedance spectroscopy for measuring the impedance response of carbon-fiber-reinforced polymer composite laminates. Composite Structures, Volume 168, 15 May 2017, Pages 510–521
Keywords:
CFRP composites; Electrical impedance spectroscopy; Non-destructive testing; Electrical measurements
  • ​Yanlong Tai, Gilles Lubineau. Human-Finger Electronics Based on Opposing Humidity-Resistance Responses in Carbon Nanofilms. Small, 2017.
Keywords:
Carbon nanomaterials
  • ​Jian Zhou, Hu Yu, Xuezhu Xu, Fei Han and Gilles Lubineau. Ultrasensitive, Stretchable Strain Sensors Based on Fragmented Carbon Nanotube Papers. ACS Appl. Mater. Interfaces, 2017, 9 (5), pp 4835–4842
Keywords:
Carbon nanotube; crack; resistance change; sensitivity; strain sensor
  • ​Jian Zhou, Xuezhu Xu, Hu Yu and Gilles Lubineau. Deformable and wearable carbon nanotube microwire-based sensors for ultrasensitive monitoring of strain, pressure and torsion. Nanoscale, 2017, 9, 604-612.
Keywords:
Sensor
  • Lubineau G, Mora A, Han F, Odeh IN, Yaldiz R , A morphological investigation of conductive networks in polymers loaded with carbon nanotubes. Computational Materials Science 130: 21–38.
Keywords:
Percolation; Carbon nanotube; Composites; Microstructure; Electrical conductivity
  • Yanlong Tai, Gilles Lubineau, “Self-Peel-Off” Transfer Produces Ultrathin Polyvinylidene-Fluoride-Based Flexible Nanodevices, Advanced Science,Volume 4, Issue 4, 1 April 2017​​
Keywords:
“Self-Peel-Off” Transfer Produces, Flexible Nanodevices