Van der Waals p–n Junction Based on an Organic–Inorganic Heterostructure
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- Type
- article
- Published
- 2015-09-01
- Cited by
- 103
- References
- 48
- OpenAlex
- https://openalex.org/W1810465244
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:94399600
Keywords
Rectification, Heterojunction, Materials science, van der Waals force, Rubrene
References
- Hopping transport through defect-induced localized states in molybdenum disulphide
- High‐Performance Flexible Broadband Photodetector Based on Organolead Halide Perovskite
- Photovoltaic Effect in an Electrically Tunable van der Waals Heterojunction
- Organic single-crystal field-effect transistors
- High-mobility and low-power thin-film transistors based on multilayer MoS2 crystals
- Photovoltaic effect in few-layer black phosphorus PN junctions defined by local electrostatic gating
- Realization and electrical characterization of ultrathin crystals of layered transition-metal dichalcogenides
- An aluminium nitride light-emitting diode with a wavelength of 210 nanometres
- Interface engineering of highly efficient perovskite solar cells
- Electroluminescence and Photocurrent Generation from Atomically Sharp WSe2/MoS2 Heterojunction p–n Diodes
- Optical response and emission waveguiding in rubrene crystals
- Photoluminescence from chemically exfoliated MoS2.
- Graphene-like two-dimensional materials.
- Nitride-based semiconductors for blue and green light-emitting devices
- Atomically thin MoS₂: a new direct-gap semiconductor.
- Oxygen-related band gap state in single crystal rubrene.
- Ultimate thin vertical p–n junction composed of two-dimensional layered molybdenum disulfide
- Single-layer MoS2 transistors.
- Tightly bound trions in monolayer MoS2.
- Organic-inorganic hybrid materials as semiconducting channels in thin-film field-effect transistors
Cited by
- A van der Waals pn heterojunction with organic/inorganic semiconductors
- Hybrid, Gate-Tunable, van der Waals p-n Heterojunctions from Pentacene and MoS2.
- Heterointerface Screening Effects between Organic Monolayers and Monolayer Transition Metal Dichalcogenides.
- Van der Waals heterostructures and devices
- Mixed-dimensional van der Waals heterostructures.
- Hybrid van der Waals p–n Heterojunctions based on SnO and 2D MoS2
- Atomically thin lateral p–n junction photodetector with large effective detection area
- Ultrafast Charge Transfer and Enhanced Absorption in MoS2-Organic van der Waals Heterojunctions Using Plasmonic Metasurfaces.
- Trap-mediated electronic transport properties of gate-tunable pentacene/MoS2 p-n heterojunction diodes
- Photodetectors Based on Two‐Dimensional Layered Materials Beyond Graphene
- Hybrid Heterojunctions of Solution-Processed Semiconducting 2D Transition Metal Dichalcogenides
- Recent progress in van der Waals heterojunctions.
- Thin film transistors based on two dimensional graphene and graphene/semiconductor heterojunctions
- Photoresponse of an Organic Semiconductor/Two-Dimensional Transition Metal Dichalcogenide Heterojunction.
- Configuration-dependent anti-ambipolar van der Waals p-n heterostructures based on pentacene single crystal and MoS2.
- Charge transfer and enhanced absorption in MoS2-organic heterojunctions using plasmonic metasurfaces
- Progress on Electronic and Optoelectronic Devices of 2D Layered Semiconducting Materials.
- Electronic Properties of a 1D Intrinsic/p-Doped Heterojunction in a 2D Transition Metal Dichalcogenide Semiconductor.
- A van der Waals p–n Heterojunction Based on Polymer-2D Layered MoS2 for Solution Processable Electronics
- Vertical MoSe2–MoOx p–n heterojunction and its application in optoelectronics
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