Solution-processed PbS quantum dot infrared photodetectors and photovoltaics
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Summary
Sittingizing conjugated polymers with infrared-active nanocrystal quantum dots provides a spectrally tunable means of accessing the infrared while maintaining the advantageous properties of polymers, and makes use of the wavelength tunability afforded by the nanocrystals to show photocurrent spectra tailored to three different regions of the infrared spectrum.
- Type
- article
- Published
- 2005-02-01
- Cited by
- 1,875
- References
- 22
- OpenAlex
- https://openalex.org/W2139836162
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:11957853
Keywords
Materials science, Optoelectronics, Infrared, Photocurrent, Photoconductivity
References
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- Energy level alignment in organic-based three-layer structures studied by photoelectron spectroscopy
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- Near IR and UV Enhanced Photoresponse of C60‐Doped Semiconducting Polymer Photodiode
- Synthesis and characterization of highly luminescent asymmetric poly(p-phenylene vinylene) derivatives for light-emitting diodes
- The path to ubiquitous and low-cost organic electronic appliances on plastic
- Colloidal PbS Nanocrystals with Size‐Tunable Near‐Infrared Emission: Observation of Post‐Synthesis Self‐Narrowing of the Particle Size Distribution
- Origin of the Open Circuit Voltage of Plastic Solar Cells
- Photoconductivity from PbS-nanocrystal∕semiconducting polymer composites for solution-processible, quantum-size tunableinfrared photodetectors
- Charge injection and transport in films of CdSe nanocrystals
- Charge separation and transport in conjugated-polymer/semiconductor-nanocrystal composites studied by photoluminescence quenching and photoconductivity.
- Small molecular weight organic thin-film photodetectors and solar cells
- Efficient Near-Infrared Polymer Nanocrystal Light-Emitting Diodes
- Photoconductivity of CdS nanocluster-doped polymers
- Size-tunable infrared (1000–1600 nm) electroluminescence from PbS quantum-dot nanocrystals in a semiconducting polymer
- Polymer‐polymer rectifying heterojunction based on poly(3,4‐dicyanothiophene) and MEH‐PPV
- Hybrid Nanorod-Polymer Solar Cells
- Electroluminescence from CdSe quantum‐dot/polymer composites
- Improved efficiencies in light emitting diodes made with CdSe(CdS) core/shell type nanocrystals and a semiconducting polymer
Cited by
- TiO2 Nanotube Arrays
- Photophysics and charge dynamics of Q-PbS based mixed ZnS/PbS and PbS/ZnS semiconductor nanoparticles.
- Enhanced quantum dot optical down-conversion using asymmetric 2D photonic crystals.
- Oriented polythiophene nanofibers grown from CdTe quantum dot surfaces.
- Investigation of quadratic electro-optic effects and electro-absorption process in GaN/AlGaN spherical quantum dot
- Absorption Enhancement in "Giant" Core/Alloyed-Shell Quantum Dots for Luminescent Solar Concentrator.
- MoS2–HgTe Quantum Dot Hybrid Photodetectors beyond 2 µm
- Self-powered vision electronic-skin basing on piezo-photodetecting Ppy/PVDF pixel-patterned matrix for mimicking vision
- Energy transduction in surface photonic crystals
- Theoretical investigation of the quantum-confined Stark effect
- Characterization, modeling, and simulation of multiscale directed-assembly systems
- Charge Transfer and Photovoltaics with Inorganic Semiconductor Nanoparticles
- Polymer electronic devices and materials.
- Synthèse et caractérisation de matériaux hybrides organiques-inorganiques à base d'architectures pi-conjuguées et de nanocristaux de semi-conducteurs II-VI
- SnO2 films: In-situ template-sacrificial growth and photovoltaic property based on SnO2/poly(3-hexyl-thiophene) for hybrid solar cell
- Chemical vapor deposition polymerization of poly(arylenevinylene)s and applications to nanoscience
- Infrared Emitting PbS Nanocrystals through Matrix Encapsulation
- Enhancing Thermal Stability and Lifetime of Solid-State Dye-Sensitized Solar Cells via Molecular Engineering of the Hole-Transporting Material Spiro-OMeTAD.
- Facile preparation of PbS nanostructures and PbS/f-CNT nanocomposites using xanthate as sulfur source: Thermal and optical characterization
- Suppressed carrier scattering in cadmium sulfideencapsulated lead sulfide nanocrystal films
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