Record power conversion efficiencies for iron(ii)-NHC-sensitized DSSCs from rational molecular engineering and electrolyte optimization
Author:
Affiliation:
1. Université de Lorraine
2. CNRS
3. L2CM
4. F-54000 Nancy
5. France
6. Department of Chemical and Pharmaceutical Sciences
7. University of Ferrara
8. Ferrara
9. Italy
10. LPCT
11. CNR-ISOF c/o Department of Chemical and Pharmaceutical Sciences
Abstract
The highest efficiency ever reported for an iron-sensitized solar cell has been obtained using a Fe(ii) pyridylNHC-carboxylic heteroleptic complex. Mg2+ cations and NBu4I in the electrolyte, substantially boosted the photocurrent.
Publisher
Royal Society of Chemistry (RSC)
Subject
General Materials Science,Renewable Energy, Sustainability and the Environment,General Chemistry
Link
http://pubs.rsc.org/en/content/articlepdf/2021/TA/D0TA10841C
Reference58 articles.
1. A low-cost, high-efficiency solar cell based on dye-sensitized colloidal TiO2 films
2. Perspectives for dye-sensitized nanocrystalline solar cells
3. Photoelectrochemical cells
4. Conversion of light to electricity by cis-X2bis(2,2'-bipyridyl-4,4'-dicarboxylate)ruthenium(II) charge-transfer sensitizers (X = Cl-, Br-, I-, CN-, and SCN-) on nanocrystalline titanium dioxide electrodes
5. Metal complex sensitizers in dye-sensitized solar cells
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