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of materials is a crucial element to perform macroscopic modelling of photovoltaic devices. Computing dielectric properties of materials in an efficient manner and keeping the desired accuracy is a formidable
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able to work as part of a team and communicate his/her results in group seminars, symposia and conferences. Context: Encapsulation of photovoltaic modules: from manufacture to end-of-life. The mass
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development as main areas of application. We seek an excellent candidate for a PhD on "Chalcogenide and oxysulfide perovskites for optoelectronic and photovoltaic applications" under the supervision of Dr
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to target sustainable polymer materials and processes for their use in organic photovoltaics (OPV). For instance, it is proposed to upgrade in a more sustainable way the routes to electro- and photo-active pi
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Programme? Not funded by an EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description Realizing photovoltaic devices that achieve the full potential
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the planet via solar radiation, which constitutes an almost infinite natural resource. This radiation can be converted into electricity using photovoltaic devices. Currently, the majority of devices based
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shape memory capabilities, good electrical conductivity and superior shock absorption capacity. The electrical power required to trigger the repair process can be supplied by photovoltaic panels, i.e