ZnO films using a precursor solution irradiated with an electron beam as the cathode interfacial layer in inverted polymer solar cells
We demonstrate the possibility of irradiating solgel ZnO with an electron beam ( EB-ZnO ) to modify solgel ZnO, and EB-ZnO is explored as a cathode interfacial layer for inverted polymer solar cells. We investigate the effect of EB-ZnO on the surface, optical and electric properties of solgel ZnO fi...
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Veröffentlicht in: | RSC advances 2017-01, Vol.7 (43), p.26689-26696 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | We demonstrate the possibility of irradiating solgel ZnO with an electron beam (
EB-ZnO
) to modify solgel ZnO, and
EB-ZnO
is explored as a cathode interfacial layer for inverted polymer solar cells. We investigate the effect of
EB-ZnO
on the surface, optical and electric properties of solgel ZnO films through morphology, chemical composition, optical band gap shift, various defect excitations (photoluminescence) and work function measurement. Oxygen vacancies and the formation of nitrogen on the surface of
EB-ZnO
films contribute to the formation of n-type degenerated
EB-ZnO
films. The electric properties of
EB-ZnO
strongly depend on the adsorbed dose, and
EB-ZnO
with a suitable dose of 100 kGy improved the power conversion efficiency of inverted polymer solar cells based on PTB7-Th: PC
71
BM from 8.05% for non-treated solgel ZnO to 9.36% for
EB-ZnO
with an enhanced fill factor.
We explore solgel ZnO irradiated with an electron beam (
EB-ZnO
) as a cathode interfacial layer for polymer solar cells. |
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ISSN: | 2046-2069 2046-2069 |
DOI: | 10.1039/c7ra02415k |