English

Wafer-scale solution-derived molecular gate dielectrics for low-voltage graphene electronics

Materials Science 2015-06-18 v1

Abstract

Graphene field-effect transistors are integrated with solution-processed multilayer hybrid organic-inorganic self-assembled nanodielectrics (SANDs). The resulting devices exhibit low-operating voltage (2 V), negligible hysteresis, current saturation with intrinsic gain > 1.0 in vacuum (pressure < 2 x 10-5 Torr), and overall improved performance compared to control devices on conventional SiO2 gate dielectrics. Statistical analysis of the field-effect mobility and residual carrier concentration demonstrate high spatial uniformity of the dielectric interfacial properties and graphene transistor characteristics over full 3 inch wafers. This work thus establishes SANDs as an effective platform for large-area, high-performance graphene electronics.

Keywords

Cite

@article{arxiv.1402.1702,
  title  = {Wafer-scale solution-derived molecular gate dielectrics for low-voltage graphene electronics},
  author = {Vinod K. Sangwan and Deep Jariwala and Ken Everaerts and Julian J. McMorrow and Jianting He and Matthew Grayson and Lincoln J. Lauhon and Tobin J. Marks and Mark C. Hersam},
  journal= {arXiv preprint arXiv:1402.1702},
  year   = {2015}
}
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