Efficient hybrid solar cells based on meso-superstructured organometal halide perovskites.

The energy costs associated with separating tightly bound excitons (photoinduced electron-hole pairs) and extracting free charges from highly disordered low-mobility networks represent fundamental losses for many low-cost photovoltaic technologies. We report a low-cost, solution-processable solar ce...

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Main Authors: Lee, M, Teuscher, J, Miyasaka, T, Murakami, T, Snaith, H
Format: Journal article
Language:English
Published: 2012
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author Lee, M
Teuscher, J
Miyasaka, T
Murakami, T
Snaith, H
author_facet Lee, M
Teuscher, J
Miyasaka, T
Murakami, T
Snaith, H
author_sort Lee, M
collection OXFORD
description The energy costs associated with separating tightly bound excitons (photoinduced electron-hole pairs) and extracting free charges from highly disordered low-mobility networks represent fundamental losses for many low-cost photovoltaic technologies. We report a low-cost, solution-processable solar cell, based on a highly crystalline perovskite absorber with intense visible to near-infrared absorptivity, that has a power conversion efficiency of 10.9% in a single-junction device under simulated full sunlight. This "meso-superstructured solar cell" exhibits exceptionally few fundamental energy losses; it can generate open-circuit photovoltages of more than 1.1 volts, despite the relatively narrow absorber band gap of 1.55 electron volts. The functionality arises from the use of mesoporous alumina as an inert scaffold that structures the absorber and forces electrons to reside in and be transported through the perovskite.
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spelling oxford-uuid:586ccf82-5806-407d-94bb-c5eb138e7d792022-03-26T17:03:13ZEfficient hybrid solar cells based on meso-superstructured organometal halide perovskites.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:586ccf82-5806-407d-94bb-c5eb138e7d79EnglishSymplectic Elements at Oxford2012Lee, MTeuscher, JMiyasaka, TMurakami, TSnaith, HThe energy costs associated with separating tightly bound excitons (photoinduced electron-hole pairs) and extracting free charges from highly disordered low-mobility networks represent fundamental losses for many low-cost photovoltaic technologies. We report a low-cost, solution-processable solar cell, based on a highly crystalline perovskite absorber with intense visible to near-infrared absorptivity, that has a power conversion efficiency of 10.9% in a single-junction device under simulated full sunlight. This "meso-superstructured solar cell" exhibits exceptionally few fundamental energy losses; it can generate open-circuit photovoltages of more than 1.1 volts, despite the relatively narrow absorber band gap of 1.55 electron volts. The functionality arises from the use of mesoporous alumina as an inert scaffold that structures the absorber and forces electrons to reside in and be transported through the perovskite.
spellingShingle Lee, M
Teuscher, J
Miyasaka, T
Murakami, T
Snaith, H
Efficient hybrid solar cells based on meso-superstructured organometal halide perovskites.
title Efficient hybrid solar cells based on meso-superstructured organometal halide perovskites.
title_full Efficient hybrid solar cells based on meso-superstructured organometal halide perovskites.
title_fullStr Efficient hybrid solar cells based on meso-superstructured organometal halide perovskites.
title_full_unstemmed Efficient hybrid solar cells based on meso-superstructured organometal halide perovskites.
title_short Efficient hybrid solar cells based on meso-superstructured organometal halide perovskites.
title_sort efficient hybrid solar cells based on meso superstructured organometal halide perovskites
work_keys_str_mv AT leem efficienthybridsolarcellsbasedonmesosuperstructuredorganometalhalideperovskites
AT teuscherj efficienthybridsolarcellsbasedonmesosuperstructuredorganometalhalideperovskites
AT miyasakat efficienthybridsolarcellsbasedonmesosuperstructuredorganometalhalideperovskites
AT murakamit efficienthybridsolarcellsbasedonmesosuperstructuredorganometalhalideperovskites
AT snaithh efficienthybridsolarcellsbasedonmesosuperstructuredorganometalhalideperovskites