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- W2794115874 startingPage "361" @default.
- W2794115874 abstract "Increasing energy demand and global warming problems have pushed humanity to search for new energy sources, such as solar, wind, geothermal, and biomass. Among the renewable energy sources, solar energy is at the forefront with clean and most abundant form of energy and affordable cost/efficiency performance of solar cells. From the various types of solar technologies, dye-sensitized solar cell (DSC) technology is an inexpensive and environmentally friendly solution to meet today's increasing energy needs. The production of DSCs with polymer-based materials enables the production of flexible, lightweight, greener solar cells. These features have also reduced transportation and production costs and have greatly expanded the application. However, the low-temperature resistance of polymer-based materials has been an obstacle to the production of highly efficient flexible cells, which requires the development of new deposition methods and materials. Counter electrodes constructed by the usage of conductive polymers or their composite structure with carbon and its derivatives have enabled the production of more efficient, stable, and cheaper cells by replacing the traditionally used Pt. Additionally, problems like solvent leakage and low chemical stability of volatile liquid electrolyte used in DSCs have been avoided by the use of polymer-based solid-state or quasi-solid-state electrolytes. In this context, polymer nanocomposite structures used in dye-sensitive solar cells with their deposition method and effects on the cell performance are examined in this chapter. Factors and strategies for improving the performance of polymers in DSCs have been reviewed and analyzed. In addition, the benefits and challenges of polymers and their composite structures for use in DSCs have been assessed." @default.
- W2794115874 created "2018-03-29" @default.
- W2794115874 creator A5009982534 @default.
- W2794115874 creator A5036584431 @default.
- W2794115874 date "2018-01-01" @default.
- W2794115874 modified "2023-10-03" @default.
- W2794115874 title "Polymer nanocomposites for dye-sensitized solar cells" @default.
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