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Nanoscale characterisation of hybrid photovoltaic cells based on C sub(61) capped CdSe QDs
by
Ducati, C
, Divitini, G
, Capria, E
, Cacovich, S
, Lughi, V
, Morgera, A Fraleoni
in
Cadmium selenides
/ Capping
/ Devices
/ Intermetallics
/ Morphology
/ Nanostructure
/ Photovoltaic cells
/ Solar cells
2014
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Nanoscale characterisation of hybrid photovoltaic cells based on C sub(61) capped CdSe QDs
by
Ducati, C
, Divitini, G
, Capria, E
, Cacovich, S
, Lughi, V
, Morgera, A Fraleoni
in
Cadmium selenides
/ Capping
/ Devices
/ Intermetallics
/ Morphology
/ Nanostructure
/ Photovoltaic cells
/ Solar cells
2014
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Nanoscale characterisation of hybrid photovoltaic cells based on C sub(61) capped CdSe QDs
by
Ducati, C
, Divitini, G
, Capria, E
, Cacovich, S
, Lughi, V
, Morgera, A Fraleoni
in
Cadmium selenides
/ Capping
/ Devices
/ Intermetallics
/ Morphology
/ Nanostructure
/ Photovoltaic cells
/ Solar cells
2014
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Nanoscale characterisation of hybrid photovoltaic cells based on C sub(61) capped CdSe QDs
Journal Article
Nanoscale characterisation of hybrid photovoltaic cells based on C sub(61) capped CdSe QDs
2014
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Overview
Hybrid solar cells based on 1,2 methanofullerene (C sub(61)) capped CdSe and poly (3-hexylthiophene) (P3HT) were been investigated through a range of techniques. High resolution transmission electron microscopy (HRTEM) was used to characterize size, morphology and crystal structure of as-grown and C sub(61)-capped CdSe quantum dots. Cross sectional lamellar specimens were prepared from full photovoltaic devices using a focused ion beam milling approach. The sections were analysed by high angle annular dark field imaging in scanning TEM mode to determine the morphology of the device, in particular the intermixing of P3HT and capped quantmn dots.
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