Searched for: author:"Dorenkamper, M.S."
(1 - 18 of 18)
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Dorenkamper, M.S. (author), Wahed, A. (author), Kumar, A. (author), de Jong, M. (author), Kroon, J. (author), Reindl, T. (author)
An enormous area could potentially be unlocked, when more photovoltaic (PV) systems would be deployed on water bodies. Especially in densely populated areas this opens a pathway for PV to contribute to the energy transition in a large scale. Another potential benefit of floating PV (FPV) systems is that they can outperform conventional PV...
article 2021
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Dekker, N.J.J. (author), Jansen, M.J. (author), Burgers, A.R. (author), Dörenkämper, M.S. (author), Jonkman, R. (author), van der Ven, R. (author), Gramsbergen, E. (author)
The most simple grid connected PV system consists of a series connection of PV modules, connected to a string inverter. The power output of such a system can be sensitive to shade on a PV module. Also limited shade on a part of a cell can lead to high temperatures in that shaded cell, a so-called hotspot. The effect of shade can be reduced by...
conference paper 2020
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Najafi, M. (author), Zhang, D. (author), Zardetto, V. (author), Di Giacomo, F. (author), Jaysankar, M. (author), Coletti, G. (author), Dorenkamper, M.S. (author), Lifka, H. (author), Verhees, W.J.H. (author), Poodt, P. (author), Geerligs, L.J. (author), Aernouts, T. (author), Veenstra, S. (author), Andriessen, H.A.J.M. (author)
The purpose of the work is to investigate high-efficient and stable 4-terminal perovskite/c-Si tandem devices. Hybrid tandems of c-Si bottom cells and perovskite top cells are perhaps the most promising candidates to reduce the levelized cost of electricity by increasing the overall tandem cell efficiency. To turn this promise in a commercial...
conference paper 2018
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Najafi, M. (author), Zhang, D. (author), Zardetto, V. (author), Fledderus, H. (author), Di Giacomo, F. (author), Jaysankar, M. (author), Coletti, G. (author), Dorenkamper, M.S. (author), Lifka, H. (author), Verhees, W.J.H. (author), Poodt, P. (author), Geerligs, L.J. (author), Aernouts, T. (author), Veenstra, S.C. (author), Andriessen, H.A.J.M. (author)
public lecture 2018
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Sinapis, K. (author), de Jong, M.M. (author), Dorenkamper, M.S. (author), Folkerts, W. (author)
conference paper 2018
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Tzikas, C. (author), Valckenborg, R.M.E. (author), Dorenkamper, M.S. (author), van den Donker, M.N. (author), Lozano, D.D. (author), Bognar, A. (author), Loonen, R. (author), Hensen, J. (author), Folkerts, W. (author)
The aim of this study is to assess the performance of prototype PV façade elements of various PV technologies, colors and textures. Within this context, a prototype PV façade demonstrator was constructed and monitored at SolarBEAT, Eindhoven. This prototype demonstrator consists of 9 façade PV panels of c-Si and CIGS technologies with flat and...
conference paper 2018
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Dorenkamper, M.S. (author)
public lecture 2018
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de Jong, M.M. (author), Dorenkamper, M.S. (author), Sinapis, K. (author), Folkerts, W. (author)
public lecture 2018
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de Jong, M.M. (author), Dorenkamper, M.S. (author), Sinapis, K. (author), Folkerts, W. (author)
Floating solar systems can represent a serious alternative to ground mounted solar systems. At present, the international market for floating PV is small compared to the total PV market, but expected to become a multi-billion market in the coming years. A main driver for the growth of the market for floating PV is the mitigation of land cost....
conference paper 2018
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Budel, T. (author), Dorenkamper, M.S. (author), Zhang, D. (author), van der Werf, C.H.M. (author), de Neve, H. (author)
Paper is a cheap substrate which is in principle compatible with the process temperature applied in the plasma enhanced chemical vapour deposition (PECVD) and hot wire CVD (HWCVD) of thin film silicon solar cells. The main drawback of paper for this application is the porosity due to its fibre like structure. The feature size (micrometre scale)...
article 2015
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Scorticati, D. (author), Illiberi, A. (author), Bor, T.C. (author), Eijt, S.W.H. (author), Schut, H. (author), Römer, G.R.B.E. (author), Klein Gunnewiek, M. (author), Lenferink, A.T.M. (author), Kniknie, B.J. (author), Mary Joy, R. (author), Dorenkamper, M.S. (author), de Lange, D.F. (author), Otto, C. (author), Borsa, D. (author), Soppe, W.J. (author), Huis in 't Veld, A.J. (author)
Abstract Industrial-grade Al:ZnO thin films, were annealed by UV picosecond laser irradiation in argon atmosphere. A remarkable increase of both the carrier density and electron mobility was measured, while the optical properties in the 400-1000 nm range did not change significantly. We studied the microstructure of the films, in order to...
article 2015
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Soppe, W.J. (author), Dorenkamper, M.S. (author), Schropp, R.E.I. (author), Zhang, D. (author), Energieonderzoek Centrum Nederland (author)
We present different new concepts to improve the light trapping in thin film silicon solar cells on steel foil. One of these concepts is to incorporate a textured back reflector, where the light scattering texture is made by Nano-Imprint Lithography (NIL). In this concept, we imprint a texture in a UV-hardening lacquer that has been applied on...
conference paper 2014
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Soppe, W.J. (author), Bakker, N.J. (author), Dorenkamper, M.S. (author), Schropp, R.E.I. (author), Zhang, D. (author), Petrov, M. (author), Dimova-Malinovska, D. (author), Energieonderzoek Centrum Nederland (author)
In this contribution, the ZnO nanorods (NRs) are demonstrated as a very effective light scattering medium at the rear side of nip thin-film silicon solar cells grown on flexible stainless steel foil. After the implementation of the ZnO NRs, the Haze of the back reflector is increased by about 40% at almost all wavelengths from 300 nm to 1200 nm....
conference paper 2014
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Weeber, A.W. (author), Bakker, N.J. (author), Lenzmann, F.O. (author), Polman, A. (author), Notta, J.B. (author), Spinelli, P. (author), Dorenkamper, M.S. (author), van Lare, M. (author), Salpakari, J. (author)
A series of (n-i-p) a-Si:H solar cells with light-trapping by front-side plasmonic Ag nonoparticle arrays was compared to a reference without the plasmonic arrays as well as to a benchmark with a conventional textured back-side reflector for light-trapping. The external quantum efficiency of the solar cells was determined experimentally by...
article 2013
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Soppe, W.J. (author), Pex, P.P.A.C. (author), Dorenkamper, M.S. (author), Schropp, R.E.I. (author), Energieonderzoek Centrum Nederland (author)
ECN and partners have developed a fabrication process based on nanoimprint lithography (NIL) of textures for light trapping in thin film solar cells such as thin-film silicon, OPV, CIGS and CdTe. The process can be applied in roll-to-roll mode when using a foil substrate or in roll-to-plate mode when using a glass substrate. The lacquer also...
conference paper 2013
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Soppe, W.J. (author), Pex, P.P.A.C. (author), Schipper, W. (author), Wilde, R. (author), Notta, J.B. (author), Dorenkamper, M.S. (author), Energieonderzoek Centrum Nederland (author)
Nano Imprint Lithography (NIL) is a versatile and commercially viable technology for fabrication of structures for light trapping in solar cells. We demonstrate the applicability of NIL in thin film silicon solar cells in substrate configuration, where NIL is used to fabricate a textured rear contact of the solar cells. We applied random...
conference paper 2012
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Soppe, W.J. (author), Pex, P.P.A.C. (author), Devilee, C. (author), Loffler, J. (author), Heijna, M. (author), van Aken, B.B. (author), Dorenkamper, M.S. (author), Energieonderzoek Centrum Nederland (author)
n.a.
article 2012
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Soppe, W.J. (author), Pex, P.P.A.C. (author), Schipper, W. (author), Wilde, R. (author), Notta, J.B. (author), Dorenkamper, M.S. (author)
Nanoimprint lithography (NIL) is a versatile and commercially viable technology for fabrication of structures for light trapping in solar cells. We demonstrate the applicability of NIL in thin film silicon solar cells in substrate configuration, where NIL is used to fabricate a textured rear contact of the solar cells. We applied random...
article 2012
Searched for: author:"Dorenkamper, M.S."
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