18% Efficiency organic solar cells.
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- Type
- article
- Published
- 2020-01-07
- Cited by
- 2,326
- References
- 40
- OpenAlex
- https://openalex.org/W2999590263
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:213251511
Keywords
Organic solar cell, Environmental science, Materials science, Engineering physics, Process engineering
References
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- High efficiency polymer solar cells based on poly(3-hexylthiophene)/indene-C70 bisadduct with solvent additive
- Preparation and Characterization of Fulleroid and Methanofullerene Derivatives
- Efficient methano[70]fullerene/MDMO-PPV bulk heterojunction photovoltaic cells.
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- Medium-Bandgap Conjugated Polymers Containing Fused Dithienobenzochalcogenadiazoles: Chalcogen Atom Effects on Organic Photovoltaics
- A High‐Performance D–A Copolymer Based on Dithieno[3,2‐b:2′,3′‐d]Pyridin‐5(4H)‐One Unit Compatible with Fullerene and Nonfullerene Acceptors in Solar Cells
- A carbon-oxygen-bridged ladder-type building block for efficient donor and acceptor materials used in organic solar cells.
- 26 mA cm-2Jsc from organic solar cells with a low-bandgap nonfullerene acceptor.
- Ternary organic solar cells offer 14% power conversion efficiency.
- Organic solar cells based on non-fullerene acceptors.
- A carbon–oxygen-bridged hexacyclic ladder-type building block for low-bandgap nonfullerene acceptors
- Thermostable single-junction organic solar cells with a power conversion efficiency of 14.62.
- Non-fullerene acceptors for organic solar cells
- A low cost and high performance polymer donor material for polymer solar cells
Cited by
- Thermodynamic Properties and Molecular Packing Explain Performance and Processing Procedures of Three D18:NFA Organic Solar Cells
- Improved efficiency of single-component active layer photovoltaics by optimizing conjugated diblock copolymers
- Improvement of Exciton Collection and Light-Harvesting Range in Ternary Blend Polymer Solar Cells Based on Two Non-Fullerene Acceptors
- Fluorination Effect for Highly Conjugated Alternating Copolymers Involving Thienylenevinylene-Thiophene-Flanked Benzodithiophene and Benzothiadiazole Subunits in Photovoltaic Application
- Recent progress in indoor organic photovoltaics.
- The role of connectivity in significant bandgap narrowing for fused-pyrene based non-fullerene acceptors toward high-efficiency organic solar cells
- A novel AH-D-A-type phase junction material to improve photovoltaic performance and device stability in fullerene OSCs
- An Alkoxy‐Solubilizing Decacyclic Electron Acceptor for Efficient Ecofriendly As‐Cast Blade‐Coated Organic Solar Cells
- Fused-ring phenazine building blocks for efficient copolymer donors
- Exploring thieno[3,4-c]pyrrole-4,6-dione combined thiophene as π-bridge to construct non-fullerene acceptors with high VOC beyond 1.0 V
- Polymer-based bioelectronics go self-powered.
- Enhanced efficiency and stability of nonfullerene ternary polymer solar cells based on a spontaneously assembled active layer: the role of a high mobility small molecular electron acceptor
- Shining Light on Organic Solar Cells
- Developing Wide Bandgap Polymers with Single Benzodithiophene-Based Unit for Efficient Polymer Solar Cells.
- The damaging effects of the acidity in PEDOT:PSS on semiconductor device performance and solutions based on non-acidic alternatives
- Single-crystal field-effect transistors based on a fused-ring electron acceptor with high ambipolar mobilities
- Influences of the terminal groups on the performances of asymmetric small molecule acceptors-based polymer solar cells
- Organic Solar Cells' Efficiency Enhanced by Perylene Monoimide Phosphorus Salt Cathode Interfacial Layer
- Progress of the key materials for organic solar cells
- Extraordinarily long diffusion length in PM6:Y6 organic solar cells
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