Wang et al., 2012 - Google Patents
Graphene/metal contacts: bistable states and novel memory devicesWang et al., 2012
- Document ID
- 14870490769988070763
- Author
- Wang X
- Xie W
- Du J
- Wang C
- Zhao N
- Xu J
- Publication year
- Publication venue
- Advanced Materials
External Links
Snippet
Graphene, a crystalline single molecular layer of carbon, has attracted much attention as a promising material in post-silicon ages. The linear energy dispersion relationship around the Dirac point where the carriers behave like relativistic particles is a unique property of the two …
- OKTJSMMVPCPJKN-UHFFFAOYSA-N carbon 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 [C] 0 title abstract description 83
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Han et al. | Hybrid Flexible Resistive Random Access Memory‐Gated Transistor for Novel Nonvolatile Data Storage | |
Lee et al. | Effect of polymer gate dielectrics on charge transport in carbon nanotube network transistors: low-k insulator for favorable active interface | |
Chen et al. | Tuning from thermionic emission to ohmic tunnel contacts via doping in Schottky-barrier nanotube transistors | |
Pan et al. | Analog circuit applications based on ambipolar graphene/MoTe2 vertical transistors | |
Hassan et al. | Phase-engineered molybdenum telluride/black phosphorus Van der Waals heterojunctions for tunable multivalued logic | |
Choi et al. | Control of current hysteresis of networked single‐walled carbon nanotube transistors by a ferroelectric polymer gate insulator | |
Lee et al. | Simultaneous improvement of hole and electron injection in organic field-effect transistors by conjugated polymer-wrapped carbon nanotube interlayers | |
Liu et al. | Two-dimensional WSe2/organic acceptor hybrid nonvolatile memory devices based on interface charge trapping | |
Choi et al. | Monolithic metal oxide transistors | |
Kim et al. | FeIn2S4 Nanocrystals: A Ternary Metal Chalcogenide Material for Ambipolar Field‐Effect Transistors | |
Kim et al. | Large‐Area Schottky Barrier Transistors Based on Vertically Stacked Graphene–Metal Oxide Heterostructures | |
Weis et al. | Conduction Mechanisms and Environmental Sensitivity of Solution‐Processed Silicon Nanoparticle Layers for Thin‐Film Transistors | |
Xin et al. | Control of unipolar/ambipolar transport in single‐molecule transistors through interface engineering | |
Sun et al. | Influence of blending ratio on resistive switching effect in donor-acceptor type composite of PCBM and PVK-based memory devices |