Dye-Sensitized Solar Cells: Fundamentals and Current Status
Сенсибилизированные красителем солнечные элементы: основы и современное состояние
2018-11-28
SCID: 54.1/6b7n9az6
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Ru(II) dyesdye-sensitized solar cellsphotovoltaic efficiencysolar cell commercializationthin-film solar cells
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Abstract (AI)
Dye-sensitized solar cells (DSSCs) belong to the group of thin-film solar cells which have been under extensive research for more than two decades due to their low cost, simple preparation methodology, low toxicity and ease of production. Still, there is lot of scope for the replacement of current DSSC materials due to their high cost, less abundance, and long-term stability. The efficiency of existing DSSCs reaches up to 12%, using Ru(II) dyes by optimizing material and structural properties which is still less than the efficiency offered by first- and second-generation solar cells, i.e., other thin-film solar cells and Si-based solar cells which offer ~ 20-30% efficiency. This article provides an in-depth review on DSSC construction, operating principle, key problems (low efficiency, low scalability, and low stability), prospective efficient materials, and finally a brief insight to commercialization.
Key Findings
1
Current DSSCs face major challenges involving costly and scarce materials, low scalability, and limited long-term stability.
2
DSSC efficiency remains below that of first- and second-generation solar cells, which achieve approximately 20–30% efficiency.
3
Dye-sensitized solar cells have attracted over two decades of research because they offer low cost, simple preparation, low toxicity, and ease of production.
4
Existing DSSC efficiencies reach up to 12% using Ru(II) dyes and optimized material and structural properties.
5
The review examines DSSC construction, operating principles, key performance limitations, prospective efficient materials, and commercialization prospects.
Research Object
dye-sensitized solar cells (DSSCs)
Research Subject
DSSC construction, operating principle, efficiency, scalability, stability, materials, and commercialization prospects
Publication Details
Publication Date
2018-11-28
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