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Progress and Prospects of Biomolecular Materials in Solar Photovoltaic Applications. [PDF]
Fricano A +4 more
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Research progress on two-dimensional phthalocyanine materials: from molecular design to exploration of multifunctional applications. [PDF]
Long D, Yang X, Cheng Z, Wang C, Peng S.
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Organic Dye for Highly Efficient Solid-State Dye-Sensitized Solar Cells [PDF]
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Lukas Schmidt-mende +2 more
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Recent Developments in Solid-State Dye-Sensitized Solar Cells
ChemSusChem, 2008AbstractThe dye‐sensitized solar cell, developed in the 1990s, is a non‐conventional solar technology that has attracted much attention owing to its stability, low cost, and device efficiency. Power‐conversion efficiencies of over 11 % have been achieved for devices that contain liquid electrolytes, whereas solid‐state devices that do not require a ...
Mohammad Khaja Nazeeruddin +2 more
exaly +6 more sources
Towards Long-Term Photostability of Solid-State Dye Sensitized Solar Cells
The solid‐state dye‐sensitized solar cell (DSSC) was introduced to overcome inherent manufacturing and instability issues of the electrolyte‐based DSSC and progress has been made to deliver high photovoltaic efficiencies at low cost. However, despite 15 years research and development, there still remains no clear demonstration of long‐term stability ...
Ullrich Steiner +2 more
exaly +7 more sources
Amphiphilic Dye for Solid-State Dye-Sensitized Solar Cells
MRS Proceedings, 2004ABSTRACTWe report a solid-state dye-sensitized solar cell with a record efficiency of 4% under simulated sunlight (AM1.5global, 100mW/cm2). This was made possible by using a new amphiphilic dye with hydrophobic spacers in combination with spiro-OMeTAD. We attribute the significant improvement in the device performance to the self-assembly of the dye to
Schmidt-Mende, Lukas +2 more
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Solid-State Photogalvanic Dye-Sensitized Solar Cells
ACS Applied Materials & Interfaces, 2014Photogalvanic cells are photoelectrochemical systems wherein the semiconductor electrode is not a participant in primary photoinduced charge formation. The discovery of photoelectrochemical systems that successfully exploit secondary (thermal) electron injection at dye-semiconductor interfaces may enable studies of electron transfer at minimal driving ...
Seare A, Berhe +4 more
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Phenoxazine dyes in solid-state dye-sensitized solar cells
Journal of Photochemistry and Photobiology A: Chemistry, 2012Several structural modifications have been made to a sensitizer dye based on the phenoxazine core.
Karlsson, Martin +5 more
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Progress in dye‐sensitized solid state solar cells
physica status solidi (b), 2008AbstractRecently, dye sensitized solid‐state solar cells with the configuration of n‐semiconductor | sensitizer | hole‐conductor (NDP) have been demonstrated. The maximum power conversion efficiency of this type of solar cells reaches only one third compared to that of dye sensitized photo‐electrochemical cells.
P. M. Sirimanne, V. P. S. Perera
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Solid-State Dye-Sensitized Solar Cells
2017The conventional liquid dye-sensitized solar cell (l-DSC) is a photoelectrochemical system with a liquid redox electrolyte. Replacement of the liquid electrolyte with a solid-state hole transporting material (HTM) has several advantages: dye desorption is prevented, liquid leakage or evaporation cannot occur, and, finally, a solid-state device is made,
Jinbao Zhang +3 more
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