Molecular design and ordering effects in π-functional materials for transistor and solar cell applications.
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Summary
This Perspective analyzes some of the most exciting strategies recently suggested in the design and structural organization of π-functional materials for transistor and solar cell applications and places emphasis on the interplay between molecular structure, self-assembling properties, nanoscale and mesoscale ordering, and device efficiency parameters.
- Type
- article
- Published
- 2011-11-22
- Cited by
- 1,329
- References
- 258
- OpenAlex
- https://openalex.org/W2030782971
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:12821230
Keywords
Nanotechnology, Transistor, Solar cell, Organic electronics, Nanoscopic scale
References
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- Bulk heterojunction solar cells with thick active layers and high fill factors enabled by a bithiophene-co-thiazolothiazole push-pull copolymer
- Tuning orbital energetics in arylene diimide semiconductors. materials design for ambient stability of n-type charge transport.
- Studies of Highly Regioregular Poly(3‐hexylselenophene) for Photovoltaic Applications
- The Relationship between the Electric Field-Induced Dissociation of Charge Transfer Excitons and the Photocurrent in Small Molecular/Polymeric Solar Cells
- Synthetic control of structural order in N-alkylthieno[3,4-c]pyrrole-4,6-dione-based polymers for efficient solar cells.
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- Processable Low-Bandgap Polymers for Photovoltaic Applications†
- Organic n-channel field-effect transistors based on arylenediimide-thiophene derivatives.
- A Solution‐Processable Star‐Shaped Molecule for High‐Performance Organic Solar Cells
- Marked alkyl- vs alkenyl-substitutent effects on squaraine dye solid-state structure, carrier mobility, and bulk-heterojunction solar cell efficiency.
- Regioregular poly(3-hexyl)selenophene: a low band gap organic hole transporting polymer.
- Effect of Annealing on the Characteristics of Organic Solar Cells: Polymer Blends with a 2-Vinyl-4,5-dicyanoimidazole Derivative
- High Carrier Mobility Polythiophene Thin Films: Structure Determination by Experiment and Theory†
Cited by
- Natural product and material chemistries--separated forever?
- Low-band-gap conjugated polymers of dithieno[2,3-b:7,6-b]carbazole and diketopyrrolopyrrole: effect of the alkyl side chain on photovoltaic properties.
- Oligothiophene semiconductors: synthesis, characterization, and applications for organic devices.
- Cooperative Self-Assembly of Carbazole Derivatives Driven by Multiple Dipole-Dipole Interactions.
- High‐Performance Polymer Solar Cells Based on a Wide‐Bandgap Polymer Containing Pyrrolo[3,4‐f]benzotriazole‐5,7‐dione with a Power Conversion Efficiency of 8.63%
- Diacenaphthylene-fused benzo[1,2-b:4,5-b']dithiophenes: polycyclic heteroacenes containing full-carbon five-membered aromatic rings.
- A Versatile and Efficient Strategy to Discrete Conjugated Oligomers.
- Rational tuning of high-energy visible light absorption for panchromatic small molecules by a two-dimensional conjugation approach
- Small optical gap molecules and polymers: using theory to design more efficient materials for organic photovoltaics.
- Molecular Engineering Strategies for the Design and Synthesis of New Organic Photovoltaic Materials
- Electrospray Ion Beam Deposition of Complex Non-Volatile Molecules
- Strategic Electronic Property Control of Self-Assembling Pyrazine-Acenes
- Molecular template growth and its applications in organic electronics and optoelectronics.
- Probing film solidification dynamics in polymer photovoltaics
- A unique concept of copolymer composed of main chain donor and side chain acceptor for promising bulk heterojunction solar cells
- Effect of the side-chain size on the optical and electrical properties of confined-PPV derivatives
- Wide Band-Gap 3,4-Difluorothiophene-Based Polymer with 7% Solar Cell Efficiency: An Alternative to P3HT
- Dipyrrin-based complexes for solution-processed organic solar cells
- Overview of high-efficiency organic photovoltaic materials and devices
- Impact of Alkoxyl Tail of Fullerene Dyad Acceptor on Crystalline Microstructure for Efficient External Treatment-free Polymer Solar Cells with Poly(3-hexylthiophene) as Donor
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