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structures to enhance the PV parameters such as open circuit voltage and short circuit current of thin film solar cells based on organic and/or perovskite materials. It is expected that the properties
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and characterization of novel catalysts, and their implementation into nanostructured electrodes within flow cell- and MEA-based reactors. The candidate will work together with other group members and
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also works towards the development of technological applications based on these materials such as electronics, bioelectronics and biosensing, neural interfaces, etc. The activities cut across different
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devices based on speckle contrast optical spectroscopy (SCOS) and related metthods akin to near-infrared diffuse correlation spectroscopy. The fellow will be working with teams that collaborate with USA
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quantum simulator. The goal is to construct a new experimental tool based on a graphene superlattice to not only measuring macroscopic observables, such as electrical resistivity and magnetization, but also
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must have experience on the topic (design, simulation, characterization or packaging of PICs). The aim of the work will be the development of next generation PIC based technologies, ranging from
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lasers based on colloidal quantum dot technology. The aim is to develop the first chip-integrated infrared quantum dot laser emitting in the telecom wavelength regime as well as in longer wavelengths
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. The successful candidate will be joining the Quantum Nano-Optoelectronics group led by Prof. Dr. Frank Koppens and will design graphene-based terahertz receivers and evaluate speed and bit transfer rate. Funded by