Current Trends in Shrinking the Channel Length of Organic Transistors Down to the Nanoscale
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Summary
Current trends in shrinking the channel length of organic field effect transistors (OFETs) down to the nanoscale in three systems where sophisticated device fabrication has been integrated into the development of different electrodes with nanoscales gaps are highlighted.
- Type
- review
- Published
- 2010-01-05
- Cited by
- 82
- References
- 98
- OpenAlex
- https://openalex.org/W1965223662
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:27134706
Keywords
Materials science, Nanoscopic scale, Current (fluid), Transistor, Nanotechnology
References
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- Nano-field effect transistor with an organic self-assembled monolayer as gate insulator
- Field Effect Conductance Measurements on Thin Crystals of Sexithiophene
- Low-voltage organic field-effect transistors and inverters enabled by ultrathin cross-linked polymers as gate dielectrics.
- Modeling of transport in polycrystalline organic semiconductor films
Cited by
- Building nanogapped graphene electrode arrays by electroburning
- Fullerenes, carbon nanotubes, and graphene for molecular electronics.
- Synergistic Photomodulation of Capacitive Coupling and Charge Separation Toward Functional Organic Field‐Effect Transistors with High Responsivity
- From micro-to macroscopic: Understanding optical properties in zinc-blend-derived materials Cu2ZnYX4(X = S, Se, Te, Y = Si, Ge, Sn) by means of the quantum chemical topology analysis
- Sub-100 nm Ferroelectric-Gate Thin-Film Transistor with Low-Temperature PZT Fabricated on SiO2/Si Substrate
- Individual single-crystal nanowires as electrodes for organic single-crystal nanodevices (vol 3, pg 9534, 2015)
- Electronic transport in sub-micron square area organic field-effect transistors
- Dithiazole-fused naphthalene diimides toward new n-type semiconductors
- New air-stable solution-processed organic n-type semiconductors based on sulfur-rich core-expanded naphthalene diimides
- Mirror-Image Photoswitching in a Single Organic Thin-Film Transistor
- Annealing-free, air-processed and high-efficiency polymer solar cells fabricated by a dip coating process
- High performance silicene nanoribbon field effect transistors with current saturation
- The Relationship between Structural and Electrical Characteristics in Perylenecarboxydiimide‐Based Nanoarchitectures
- Ambipolar copper phthalocyanine transistors with carbon nanotube array electrodes
- Electrospun Organic Nanofiber Electronics and Photonics
- High‐Performance Organic Solar Cells with Spray‐Coated Hole‐Transport and Active Layers
- Development of new methods in modern selective organic synthesis: preparation of functionalized molecules with atomic precision
- First principles study of electronic and optical properties of Cu2ZnSnX4 (X = S, Se) solar absorbers by Tran–Blaha-modified Becke–Johnson potential approach
- Nanofabrication down to 10 nm on a plastic substrate
- Negative rectification and negative differential resistance in nanoscale single-walled carbon nanotube p-n junctions
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