Approaching truly sustainable solar cells by the use of water and cellulose derivatives

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Abstract

Aqueous dye-sensitized solar cells (DSSCs) are emerging as the first truly safe, cheap and eco-friendly photovoltaic technology, at the same time overcoming the well-known instability upon moisture/water contamination typical of many solar cells. While many aqueous DSSCs recently proposed still contain little amounts of organic solvents or petroleum-derived polymeric matrices, here we propose the first 100% hydrogel electrolyte, consisting of carboxymethylcellulose as a green jellifying agent, water and iodide/triiodide redox mediator. Electrochemical and photoelectrochemical properties of the resulting electrolytes and solar cells are thoroughly investigated, with a special focus on the long-term stability of the aqueous devices under different operating and aging conditions. The obtained promising efficiencies and stabilities, combined with a metal-free sensitizer, lead here to sustainable, stable, transparent and building-integrable solar cells, without suffering from any safety and/or toxicity issues.

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Bella, F., Galliano, S., Falco, M., Viscardi, G., Barolo, C., Grätzel, M., & Gerbaldi, C. (2017). Approaching truly sustainable solar cells by the use of water and cellulose derivatives. Green Chemistry, 19(4), 1043–1051. https://doi.org/10.1039/c6gc02625g

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