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Structural, optical and photovoltaic properties of V2O5/ZnO and reduced graphene oxide (rGO)-V2O5/ZnO nanocomposite photoanodes for dye-sensitized solar cells

  • Carbon Letters
  • Abbr : Carbon Lett.
  • 2024, 34(1), pp.13-24
  • DOI : 10.1007/s42823-023-00608-x
  • Publisher : Korean Carbon Society
  • Research Area : Natural Science > Natural Science General > Other Natural Sciences General
  • Received : July 3, 2023
  • Accepted : September 3, 2023
  • Published : February 1, 2024

Lakshmi C. Bhagya 1 Venus S. Anna 1 Velanganni S. 2 Muthukrishnaraj A. 3 Ayyar Manikandan 4 Henini Mohamed 5

1Manonmanium Sundaranar University, Palayamkottai, Tirunelveli, 627002, India 산하 St. Xavier's College(자율) 에너지 연구 센터 물리학과
2Parvathy's Arts and Science College(Madurai Kamaraj University 부속), Dindigul, 624002, 인도 화학과
3인도 타밀 나두 주 코임바토르 Karpagam 고등 교육 아카데미 공학부 화학과, 641021, 인도
4Bharath Institute of Higher Education and Research (BIHER),
5영국 노팅엄대학교

Accredited

ABSTRACT

Recently, dye-sensitized solar cells (DSSCs) can be seen as a talented alternate to the conservative photovoltaic strategies and has fascinated significant consideration as they offer the opportunity for low-cost and also high alteration photovoltaic (PV) energy [1,2,3]. Over the last decade, researchers have concentrated on developing a photoanode (working electrode) with a diversity of morphologies in order to expand the proficiency of DSSCs. TiO2 is the greatest often active photoanode substantial in DSSCs, owing to its porosity and durable catalytic nature. Recently discovered interface properties such as charge departure, converse recombination, and tricking of photogenerated electrons in semiconductor device outsides self-sufficiently by defining optimal material mixtures and their gathering [4, 5]. To maximize overall energy conversion efficiency (ECE), it is essential to construct a combination of materials consisting of various metal oxide semiconductors (MOS) that reduces recombination currents, improves light absorption, ensures a good electric connection.

Citation status

Scopus Citation Counts (2) This is the result of checking the information with the same ISSN, publication year, volume, and start page between articles in KCI and the SCOPUS journals. (as of 2024-10-01)

* References for papers published after 2023 are currently being built.