Enhancement of hybrid solar cell performance by polythieno [3,4-b]thiophenebenzodithiophene and microplasma-induced surface engineering of silicon nanocrystals
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Title
Enhancement of hybrid solar cell performance by polythieno [3,4-b]thiophenebenzodithiophene and microplasma-induced surface engineering of silicon nanocrystals
Authors
Keywords
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Journal
APPLIED PHYSICS LETTERS
Volume 100, Issue 22, Pages 223904
Publisher
AIP Publishing
Online
2012-06-01
DOI
10.1063/1.4721437
References
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Note: Only part of the references are listed.- Silicon Nanocrystals in Liquid Media: Optical Properties and Surface Stabilization by Microplasma-Induced Non-Equilibrium Liquid Chemistry
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- A New Class of Semiconducting Polymers for Bulk Heterojunction Solar Cells with Exceptionally High Performance
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- Optimization of Si NC/P3HT Hybrid Solar Cells
- (2010) Chin-Yi Liu et al. ADVANCED FUNCTIONAL MATERIALS
- For the Bright Future-Bulk Heterojunction Polymer Solar Cells with Power Conversion Efficiency of 7.4%
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- Controlling the Morphology and Efficiency of Hybrid ZnO:Polythiophene Solar Cells Via Side Chain Functionalization
- (2010) Stefan D. Oosterhout et al. Advanced Energy Materials
- Top-down prepared silicon nanocrystals and a conjugated polymer-based bulk heterojunction: Optoelectronic and photovoltaic applications
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- Doping of the Metal Oxide Nanostructure and its Influence in Organic Electronics
- (2009) Mi-Hyae Park et al. ADVANCED FUNCTIONAL MATERIALS
- Highly Efficient Tandem Polymer Photovoltaic Cells
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- (2009) Sung Heum Park et al. Nature Photonics
- Improved transport and photostability of poly(methoxy-ethylexyloxy-phenylenevinilene) polymer thin films by boron doped freestanding silicon nanocrystals
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- Hybrid Solar Cells from P3HT and Silicon Nanocrystals
- (2008) Chin-Yi Liu et al. NANO LETTERS
- Fantastic plastic
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