A comprehensive review of dye-sensitized solar cell optimal fabrication conditions, natural dye selection, and application-based future perspectives

Author:

Baby Ruby,Nixon Peter Daniel,Kumar Nallapaneni ManojORCID,Subathra M. S. P.,Ananthi Nallamuthu

Publisher

Springer Science and Business Media LLC

Subject

Health, Toxicology and Mutagenesis,Pollution,Environmental Chemistry,General Medicine

Reference112 articles.

1. Abdel-Latif MS, Abuiriban MB, El-Agez TM, Taya SA (2015) Dye-sensitized solar cells using dyes extracted from flowers, leaves, parks, and roots of three trees. Int J Renew Energy Res 5:294–298

2. Abodunrin T, Uhuegbu C, Olugbuyiro J (2015) Phytochemical analysis of leaf-extracts from eight tropical trees: prospects for environmentally-friendly dye compounds for smart windows. Int J Sci Eng Res 6:682–698

3. Afrooz M, Dehghani H (2015) Effects of triphenyl phosphate as inexpensive additive on the photovoltaic performance of dye-sensitized nanocrystalline TiO2 solar cells. RSC Adv 5:50483–50493

4. Alaba AK (2012) Utilization of natural Morinda lucida as photosensitizers for dyesensitized solar cell. Arch Appl Sci Res 4:419–425

5. Al-Alwani MAM, Al-Mashaan ABSA, Abdullah MF (2019) Performance of the dye-sensitized solar cells fabricated using natural dyes from Ixora coccinea flowers and Cymbopogon schoenanthus leaves as sensitizers. Int J Energy Res 43:1–11

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