Crystalline MoOx Thin-Films as Hole Transport Layers in DBP/C70 Based Organic Solar Cell

Mehrad Ahmadpour, André Luis Fernandes Cauduro, Roberto dos Reis, Gong Chen, Andreas K. Schmid, Horst-Günter Rubahn, Morten Madsen

Publikation: Konferencebidrag uden forlag/tidsskriftPosterForskningpeer review

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Resumé

Transition Metal Oxides such as Molybdenum oxide (MoOx) have been intensively used as hole transport layers in different organic, inorganic and hybrid technologies, demonstrating also important improvements on the power conversion efficiency as well as on the stability of different types of solar cells. Among several different deposition methods available for fabrication of MoOx thin-films, reactive sputtering arises as an interesting alternative due to its full control over the deposition parameters such as the deposition power, reactive gas partial pressure and the deposition rate.
OriginalsprogEngelsk
Publikationsdato21. maj 2017
StatusUdgivet - 21. maj 2017
BegivenhedInternational Conference on Hybrid and Organic Photovoltaics - Lausanne, Schweiz
Varighed: 21. maj 201724. maj 2017
http://nanoge.org/HOPV17/

Konference

KonferenceInternational Conference on Hybrid and Organic Photovoltaics
LandSchweiz
ByLausanne
Periode21/05/201724/05/2017
Internetadresse

Fingeraftryk

Molybdenum oxide
Oxide films
Crystalline materials
Thin films
Reactive sputtering
Deposition rates
Reactive power
Partial pressure
Oxides
Conversion efficiency
Transition metals
Solar cells
Gases
Fabrication
Organic solar cells

Citer dette

Ahmadpour, M., Fernandes Cauduro, A. L., dos Reis, R., Chen, G., K. Schmid, A., Rubahn, H-G., & Madsen, M. (2017). Crystalline MoOx Thin-Films as Hole Transport Layers in DBP/C70 Based Organic Solar Cell. Poster session præsenteret på International Conference on Hybrid and Organic Photovoltaics, Lausanne, Schweiz.
Ahmadpour, Mehrad ; Fernandes Cauduro, André Luis ; dos Reis, Roberto ; Chen, Gong ; K. Schmid, Andreas ; Rubahn, Horst-Günter ; Madsen, Morten. / Crystalline MoOx Thin-Films as Hole Transport Layers in DBP/C70 Based Organic Solar Cell. Poster session præsenteret på International Conference on Hybrid and Organic Photovoltaics, Lausanne, Schweiz.
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title = "Crystalline MoOx Thin-Films as Hole Transport Layers in DBP/C70 Based Organic Solar Cell",
abstract = "Transition Metal Oxides such as Molybdenum oxide (MoOx) have been intensively used as hole transport layers in different organic, inorganic and hybrid technologies, demonstrating also important improvements on the power conversion efficiency as well as on the stability of different types of solar cells. Among several different deposition methods available for fabrication of MoOx thin-films, reactive sputtering arises as an interesting alternative due to its full control over the deposition parameters such as the deposition power, reactive gas partial pressure and the deposition rate.",
author = "Mehrad Ahmadpour and {Fernandes Cauduro}, {Andr{\'e} Luis} and {dos Reis}, Roberto and Gong Chen and {K. Schmid}, Andreas and Horst-G{\"u}nter Rubahn and Morten Madsen",
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month = "5",
day = "21",
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note = "International Conference on Hybrid and Organic Photovoltaics, HOPV 2017 ; Conference date: 21-05-2017 Through 24-05-2017",
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Ahmadpour, M, Fernandes Cauduro, AL, dos Reis, R, Chen, G, K. Schmid, A, Rubahn, H-G & Madsen, M 2017, 'Crystalline MoOx Thin-Films as Hole Transport Layers in DBP/C70 Based Organic Solar Cell' International Conference on Hybrid and Organic Photovoltaics, Lausanne, Schweiz, 21/05/2017 - 24/05/2017, .

Crystalline MoOx Thin-Films as Hole Transport Layers in DBP/C70 Based Organic Solar Cell. / Ahmadpour, Mehrad ; Fernandes Cauduro, André Luis; dos Reis, Roberto; Chen, Gong ; K. Schmid, Andreas ; Rubahn, Horst-Günter; Madsen, Morten.

2017. Poster session præsenteret på International Conference on Hybrid and Organic Photovoltaics, Lausanne, Schweiz.

Publikation: Konferencebidrag uden forlag/tidsskriftPosterForskningpeer review

TY - CONF

T1 - Crystalline MoOx Thin-Films as Hole Transport Layers in DBP/C70 Based Organic Solar Cell

AU - Ahmadpour, Mehrad

AU - Fernandes Cauduro, André Luis

AU - dos Reis, Roberto

AU - Chen, Gong

AU - K. Schmid, Andreas

AU - Rubahn, Horst-Günter

AU - Madsen, Morten

PY - 2017/5/21

Y1 - 2017/5/21

N2 - Transition Metal Oxides such as Molybdenum oxide (MoOx) have been intensively used as hole transport layers in different organic, inorganic and hybrid technologies, demonstrating also important improvements on the power conversion efficiency as well as on the stability of different types of solar cells. Among several different deposition methods available for fabrication of MoOx thin-films, reactive sputtering arises as an interesting alternative due to its full control over the deposition parameters such as the deposition power, reactive gas partial pressure and the deposition rate.

AB - Transition Metal Oxides such as Molybdenum oxide (MoOx) have been intensively used as hole transport layers in different organic, inorganic and hybrid technologies, demonstrating also important improvements on the power conversion efficiency as well as on the stability of different types of solar cells. Among several different deposition methods available for fabrication of MoOx thin-films, reactive sputtering arises as an interesting alternative due to its full control over the deposition parameters such as the deposition power, reactive gas partial pressure and the deposition rate.

M3 - Poster

ER -

Ahmadpour M, Fernandes Cauduro AL, dos Reis R, Chen G, K. Schmid A, Rubahn H-G et al. Crystalline MoOx Thin-Films as Hole Transport Layers in DBP/C70 Based Organic Solar Cell. 2017. Poster session præsenteret på International Conference on Hybrid and Organic Photovoltaics, Lausanne, Schweiz.