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Journal article

Quantum funneling in blended multi-band gap core/shell colloidal quantum dot solar cells

Abstract:
Multi-band gap heterojunction solar cells fabricated from a blend of 1.2 eV and 1.4 eV PbS colloidal quantum dots (CQDs) show poor device performance due to non-radiative recombination. To overcome this, a CdS shell is epitaxially formed around the PbS core using cation exchange. From steady state and transient photoluminescence measurements, we understand the nature of charge transfer between these quantum dots. Photoluminescence decay lifetimes are much longer in the PbS/CdS core/shell blend compared to PbS only, explained by a reduction in non-radiative recombination resulting from CdS surface passivation. PbS/CdS heterojunction devices sustain a higher open-circuit voltage and lower reverse saturation current as compared to PbS-only devices, implying lower recombination rates. Further device performance enhancement is attained by modifying the composition profile of the CQD species in the absorbing layer resulting in a three dimensional quantum cascade structure.
Publication status:
Published
Peer review status:
Peer reviewed

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Publisher copy:
10.1063/1.4930144

Authors


More by this author
Institution:
University of Oxford
Division:
MPLS
Department:
Materials
Role:
Author
More by this author
Institution:
University of Oxford
Division:
MPLS
Department:
Physics
Sub department:
Condensed Matter Physics
Role:
Author
More by this author
Institution:
University of Oxford
Division:
MPLS
Department:
Physics
Sub department:
Condensed Matter Physics
Role:
Author
More by this author
Institution:
University of Oxford
Division:
MPLS
Department:
Physics
Sub department:
Condensed Matter Physics
Role:
Author
More by this author
Institution:
University of Oxford
Division:
MPLS
Department:
Materials
Role:
Author


More from this funder
Funding agency for:
Eperon, G
Grant:
EP/F048009/1
More from this funder
Funding agency for:
Neo, D
Grant:
National Science Scholarship Award
More from this funder
Funding agency for:
Eperon, G


Publisher:
American Institute of Physics
Journal:
Applied Physics Letters More from this journal
Volume:
107
Issue:
10
Pages:
103902-103902
Publication date:
2015-09-10
DOI:
EISSN:
1077-3118
ISSN:
0003-6951


Pubs id:
pubs:546877
UUID:
uuid:e6608f33-5c1b-4d6f-93f4-668cb1b7dd17
Local pid:
pubs:546877
Source identifiers:
546877
Deposit date:
2016-01-12

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