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Showing 1 to 5 of 5 for “"Dye Sensitised Solar Cells"”.
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Integration of liquid crystals with redox electrolytes in dye-sensitised solar cells
… mixtures, and their potential application in dye-sensitised solar cells (DSSCs). The birefringence of LCs causes light modulation, which can be controlled by an applied voltage and electric field. In particular, the LCs are used as one of the components for the electrolyte redox couple which …
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Efficiency Improvement of Cross-Compound Parabolic Concentrator for Silicon and Dye-sensitised Solar Cells
… ratio was integrated with third-generation dye-sensitised solar cells (DSSCs) by directly synthesising the solar cell onto the concentrator’s receiver. Initially, to assess the impact of CCPC integration, silicon solar cells were integrated with CCPCs using UV adhesive and evaluated under …
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Application of Radial Distribution Functions to Diffraction and Imaging Data: Interfacial Structures, Amorphous, Disordered Materials
… to the structure of the working electrode in dye-sensitised solar cells (DSSCs). This structure was successfully observed, validating this novel method. The investigation also suggested preferred binding modes of the carboxylic acid anchoring groups present in this interfacial structure. …
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Novel Integration Strategies with Photovoltaics Using Different Compound Parabolic Concentrator Geometries: Optical, Thermal, and Scalable Investigations
… devices, including carbon-based perovskite solar cells (c-PSCs), silicon solar cells and dye-sensitised solar cells (DSSCs), were fabricated and experimentally integrated with cross-compound parabolic concentrators (CCPCs) and dielectric asymmetric compound parabolic concentrators (DiACPCs). …
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Printable 2d Material Optoelectronics and Photonics
… humidity sensors and as counter-electrodes in dye-sensitised solar cells, while the printed TMDs and BP are used to develop nonlinear photonic devices (i.e. saturable absorbers for femtosecond pulsed laser generation) and visible to near-infrared photodetectors (e.g. MoS$_2$ and …