Scinovex
articleTop 1% cited

Chemical Management for Colorful, Efficient, and Stable Inorganic–Organic Hybrid Nanostructured Solar Cells

Nano Letters · 2013 · Vol. 13(4) · pp. 1764–1769
Jun Hong NohSang Hyuk ImJin Hyuck HeoTarak Nath MandalSang Il Seok

Abstract

Chemically tuned inorganic-organic hybrid materials, based on CH3NH3(═MA)Pb(I(1-x)Br(x))3 perovskites, have been studied using UV-vis absorption and X-ray diffraction patterns and applied to nanostructured solar cells. The band gap engineering brought about by the chemical management of MAPb(I(1-x)Br(x))3 perovskites can be controllably tuned to cover almost the entire visible spectrum, enabling the realization of colorful solar cells. We demonstrate highly efficient solar cells exhibiting 12.3% in a power conversion efficiency of under standard AM 1.5, for the most efficient device, as a result of tunable composition for the light harvester in conjunction with a mesoporous TiO2 film and a hole conducting polymer. We believe that the works highlighted in this paper represent one step toward the realization of low-cost, high-efficiency, and long-term stability with colorful solar cells.

Perovskite Materials and ApplicationsConducting polymers and applicationsOrganic Electronics and PhotovoltaicsHybrid solar cellMaterials scienceEnergy conversion efficiencyMesoporous materialRealization (probability)Organic solar cellChemical stabilityNanotechnologyOptoelectronicsPerovskite (structure)

MeSH terms

OxidesSolar EnergyTitaniumUltraviolet RaysCalcium CompoundsNanostructures
Citations
4,721
FWCI
278.19
field-weighted impact
References
19
Percentile
100%
vs. same field & year
Citations per year
References
Constituent quarks and g 1
The European Physical Journal A · 1999 · 1,178 citations
Die Konstitution der Mischkristalle und die Raumf�llung der Atome
The European Physical Journal A · 1921 · 3,753 citations
Organometal Halide Perovskites as Visible-Light Sensitizers for Photovoltaic Cells
Journal of the American Chemical Society · 2009 · 22,193 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.