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High Efficiency Hybrid Solar Cells Using Nanocrystalline Si Quantum Dots and Si Nanowires.

ACS nano (2015-07-15)
Mrinal Dutta, Lavanya Thirugnanam, Pham Van Trinh, Naoki Fukata
ZUSAMMENFASSUNG

We report on an efficient hybrid Si nanocrystal quantum dot modified radial p-n junction thinner Si solar cell that utilizes the advantages of effective exciton collection by energy transfer from nanocrystal-Si (nc-Si) quantum dots to underlying radial p-n junction Si nanowire arrays with excellent carrier separation and propagation via the built-in electric fields of radial p-n junctions. Minimization of recombination, optical, and spectrum losses in this hybrid structure led to a high cell efficiency of 12.9%.

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Wasserstoffperoxid -Lösung, 30 % (w/w) in H2O, contains stabilizer
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Ethyl alcohol, Pure, 200 proof, anhydrous, ≥99.5%
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Toluol, anhydrous, 99.8%
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Methanol, anhydrous, 99.8%
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Schwefelsäure, 99.999%
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1-Octadecen, technical grade, 90%
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Ethyl alcohol, Pure, 190 proof, ACS spectrophotometric grade, 95.0%
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Silbernitrat, 99.9999% trace metals basis
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Mesitylen, 98%
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Wasserstoffperoxid -Lösung, 34.5-36.5%
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Silbernitrat auf Kieselgel, extent of labeling: ~10 wt. % loading, +230 mesh
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1-Octadecen, ≥95.0% (GC)
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Silbernitrat -Lösung, 2.5 % (w/v) AgNO3 in H2O
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Silbernitrat, BioReagent, suitable for plant cell culture, >99% (titration)
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Silbernitrat, ≥99.999% trace metals basis
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Silbernitrat, BioXtra, >99% (titration)
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Mesitylen, reagent grade, 97%
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Methanol, suitable for NMR (reference standard)
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Methanol -Lösung, suitable for NMR (reference standard), 4% in methanol-d4 (99.8 atom % D), NMR tube size 3 mm × 8 in.