Gate-tunable carbon nanotube-MoS2 heterojunction p-n diode
arXiv:1310.6072 · doi:10.1073/pnas.1317226110
Abstract
The p-n junction diode and field-effect transistor (FET) are the two most ubiquitous building blocks of modern electronics and optoelectronics. In recent years, the emergence of reduced dimensionality materials has suggested that these components can be scaled down to atomic thicknesses. Although high performance field-effect devices have been achieved from monolayered materials and their heterostructures, a p-n heterojunction diode derived from ultrathin materials is notably absent and constrains the fabrication of complex electronic and optoelectronic circuits. Here, we demonstrate a gate-tunable p-n heterojunction diode using semiconducting single-walled carbon nanotubes (s-SWCNTs) and single-layer molybdenum disulfide (SL-MoS2) as p-type and n-type semiconductors, respectively. The vertical stacking of these two direct band gap semiconductors forms a heterojunction with electrical characteristics that can be tuned with an applied gate bias to achieve a wide range of charge transport behavior ranging from insulating to rectifying with forward-to-reverse bias current ratios exceeding 10^4. This heterojunction diode also responds strongly to optical irradiation with an external quantum efficiency (EQE) of 25% and fast photoresponse < 15 μs. Since SWCNTs have a diverse range of electrical properties as a function of chirality, and since an increasing number of atomically thin 2D nanomaterials are being isolated, the gate-tunable p-n heterojunction concept presented here should be widely generalizable to realize diverse ultrathin, high-performance electronics and optoelectronics.
4 figures. Combined with supporting information Proceedings of the National Academy of Sciences of U.S.A. (2013)
References in corpus (11)
- Boron nitride substrates for high-quality graphene electronics
- Anomalous Lattice Vibrations of Single and Few-Layer MoS2
- High Performance Single Layered WSe2 p-FETs with Chemically Doped Contacts
- Vertical Field Effect Transistor based on Graphene-WS2 Heterostructures for flexible and transparent electronics
- Carbon nanomaterials for electronics, optoelectronics, photovoltaics, and sensing
- Nonvolatile Memory Cells Based on MoS2/Graphene Heterostructures
- Channel Length Scaling of MoS2 MOSFETs
- Resonant tunnelling and negative differential conductance in graphene transistors
- Quantitative Determination of the Band-Gap of WS2 with Ambipolar Ionic Liquid-Gated Transistors
- Band-Like Transport in High Mobility Unencapsulated Single-Layer MoS2 Transistors
- Elucidating the photoresponse of ultrathin MoS2 field-effect transistors by scanning photocurrent microscopy
Cited by in corpus (43)
- Emerging Device Applications for Semiconducting Two-Dimensional Transition Metal Dichalcogenides
- Mixed-Dimensional van der Waals Heterostructures
- Semiconducting Black Phosphorus: Synthesis, Transport Properties and Electronic Applications
- Black Phosphorus-Monolayer MoS2 van der Waals Heterojunction P-N Diode
- Strong interlayer coupling in van der Waals heterostructures built from single-layer chalcogenides
- Electroluminescence and photocurrent generation from atomically sharp WSe2/MoS2 heterojunction p-n diodes
- Photovoltaic effect in an electrically tunable van der Waals heterojunction
- Solvent Exfoliation of Electronic-Grade, Two-Dimensional Black Phosphorus
- Charge transport and mobility engineering in two-dimensional transition metal chalcogenide semiconductors
- Hybrid, Gate-Tunable, van der Waals p-n Heterojunctions from Pentacene and MoS2
- Electronic Transport in Two-Dimensional Materials
- Atomically thin p-n junctions based on two-dimensional materials
- Chemically Tailoring Semiconducting Two-Dimensional Transition Metal Dichalcogenides and Black Phosphorus
- Ultrafast Exciton Dissociation and Long-Lived Charge Separation in a Photovoltaic Pentacene MoS2 van der Waals Heterojunction
- Van der Waals heterojunction devices based on organohalide perovskites and two-dimensional materials
- Thickness Scaling Effect on Interfacial Barrier and Electrical Contact to Two-Dimensional MoS2 Layers
- Investigation of Band-Offsets at Monolayer-Multilayer MoS2 Junctions by Scanning Photocurrent Microscopy
- Device physics of van der Waals heterojunction solar cells
- Mutual Photoluminescence Quenching and Photovoltaic Effect in Large-Area Single-Layer MoS2-Polymer Heterojunctions
- Point Defects and Grain Boundaries in Rotationally Commensurate MoS2 on Epitaxial Graphene
- Large-area, low-voltage, anti-ambipolar heterojunctions from solution-processed semiconductors
- Gate-Tunable Semiconductor Heterojunctions from 2D/3D van der Waals Interfaces
- Gate-tunable diode and photovoltaic effect in an organic-2D layered material p-n junction
- Gate-controlled reversible rectifying behaviour in tunnel contacted atomically-thin MoS transistor
- All van der Waals Integrated Nanophotonics
- Doped-MoSe2 nanoflakes/3d metal oxide-hydr(oxy)oxides hybrid catalysts for pH-universal electrochemical hydrogen evolution reaction
- Self-Aligned van der Waals Heterojunction Diodes and Transistors
- Opportunities in Electrically Tunable 2D Materials Beyond Graphene: Recent Progress and Future Outlook
- Visualization of Local Conductance in MoS2/WSe2 Heterostructure Transistors
- Reconfigurable p-n Junction Diodes and the Photovoltaic Effect in Exfoliated MoS2 Films
- Charge Separation at Mixed-Dimensional Single and Multilayer MoS2/Silicon Nanowire Heterojunctions
- Gate-tunable Photoresponse Time in BlackPhosphorus-MoS2Heterojunctions
- On the charge transfer between single-walled carbon nanotubes and graphene
- Room temperature infrared photodetectors with hybrid structure based on 2D materials
- Multifunctional magnetic oxide-MoS heterostructures on silicon
- Photodetection in p-n junctions formed by electrolyte-gated transistors of two-dimensional crystals
- Lateral p-n Junction in an Inverted InAs/GaSb Double Quantum Well
- Carrier Injection and Scattering in Atomically Thin Chalcogenides
- Observation of increasing bending rigidity of graphene with temperature
- Photodiodes based in La0.7Sr0.3MnO3/single layer MoS2 hybrid vertical heterostructures
- Single charge control of localized excitons in heterostructures with ferroelectric thin films and two-dimensional transition metal dichalcogenides
- Bio-realistic and versatile artificial dendrites made of anti-ambipolar transistors
- Ferroelectric driven exciton and trion modulation in monolayer MoSe2 and WSe2