In situ measurement of exciton energy in hybrid singlet-fission solar cells
- 1 January 2012
- journal article
- research article
- Published by Springer Nature in Nature Communications
- Vol. 3 (1) , 1019
- https://doi.org/10.1038/ncomms2012
Abstract
Singlet exciton fission-sensitized solar cells have the potential to exceed the Shockley–Queisser limit by generating additional photocurrent from high-energy photons. Pentacene is an organic semiconductor that undergoes efficient singlet fission—the conversion of singlet excitons into pairs of triplets. However, the pentacene triplet is non-emissive, and uncertainty regarding its energy has hindered device design. Here we present an in situ measurement of the pentacene triplet energy by fabricating a series of bilayer solar cells with infrared-absorbing nanocrystals of varying bandgaps. We show that the pentacene triplet energy is at least 0.85 eV and at most 1.00 eV in operating devices. Our devices generate photocurrent from triplets, and achieve external quantum efficiencies up to 80%, and power conversion efficiencies of 4.7%. This establishes the general use of nanocrystal size series to measure the energy of non-emissive excited states, and suggests that fission-sensitized solar cells are a favourable candidate for third-generation photovoltaics.Keywords
This publication has 59 references indexed in Scilit:
- Polymer solar cellsNature Photonics, 2012
- Understanding intermediate-band solar cellsNature Photonics, 2012
- Peak External Photocurrent Quantum Efficiency Exceeding 100% via MEG in a Quantum Dot Solar CellScience, 2011
- Practical Roadmap and Limits to Nanostructured PhotovoltaicsAdvanced Materials, 2011
- Tandem colloidal quantum dot solar cells employing a graded recombination layerNature Photonics, 2011
- Singlet FissionChemical Reviews, 2010
- Hot-Electron Transfer from Semiconductor NanocrystalsScience, 2010
- Conjugated‐Polymer Blends for OptoelectronicsAdvanced Materials, 2009
- Solar conversion efficiency of photovoltaic and photoelectrolysis cells with carrier multiplication absorbersJournal of Applied Physics, 2006
- Detailed Balance Limit of Efficiency of p-n Junction Solar CellsJournal of Applied Physics, 1961