Design and synthesis of imidazole-triphenylamine based organic materials for dye sensitized solar cells

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Autoren

  • S. Sambathkumar
  • S. Priyadharshini
  • Manuel Marco Romanus Fleisch
  • Detlef Bahnemann
  • G. Gnana Kumar
  • S. Senthilarasu
  • R. Renganathan

Organisationseinheiten

Externe Organisationen

  • Theivanai Ammal College for Women (Autonomous)
  • Bharathidasan University
  • Madurai Kamaraj University
  • University of Exeter
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Details

OriginalspracheEnglisch
Seiten (von - bis)28-31
Seitenumfang4
FachzeitschriftMaterials letters
Jahrgang242
Frühes Online-Datum22 Jan. 2019
PublikationsstatusVeröffentlicht - 1 Mai 2019

Abstract

Two imidazole – triphenylamine based organic dyes (SD1 and SD2) configured with donor -donor-π-acceptor (D 2 -π-A) structures with reported dye material namely TPA B5 were synthesized using different acceptor units and characterized by various spectroscopic techniques. The optical and electrochemical behavior of the dyes was systematically analyzed. The obtained results were compared with TPA B5 and found that, these dyes are considered to have proper electronic energy levels as promising sensitizers in dye sensitized solar cells (DSC's). This work could facilitate the development of new way to improve the performance of anchoring units.

ASJC Scopus Sachgebiete

Zitieren

Design and synthesis of imidazole-triphenylamine based organic materials for dye sensitized solar cells. / Sambathkumar, S.; Priyadharshini, S.; Fleisch, Manuel Marco Romanus et al.
in: Materials letters, Jahrgang 242, 01.05.2019, S. 28-31.

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Sambathkumar, S, Priyadharshini, S, Fleisch, MMR, Bahnemann, D, Gnana Kumar, G, Senthilarasu, S & Renganathan, R 2019, 'Design and synthesis of imidazole-triphenylamine based organic materials for dye sensitized solar cells', Materials letters, Jg. 242, S. 28-31. https://doi.org/10.1016/j.matlet.2019.01.091
Sambathkumar, S., Priyadharshini, S., Fleisch, M. M. R., Bahnemann, D., Gnana Kumar, G., Senthilarasu, S., & Renganathan, R. (2019). Design and synthesis of imidazole-triphenylamine based organic materials for dye sensitized solar cells. Materials letters, 242, 28-31. https://doi.org/10.1016/j.matlet.2019.01.091
Sambathkumar S, Priyadharshini S, Fleisch MMR, Bahnemann D, Gnana Kumar G, Senthilarasu S et al. Design and synthesis of imidazole-triphenylamine based organic materials for dye sensitized solar cells. Materials letters. 2019 Mai 1;242:28-31. Epub 2019 Jan 22. doi: 10.1016/j.matlet.2019.01.091
Sambathkumar, S. ; Priyadharshini, S. ; Fleisch, Manuel Marco Romanus et al. / Design and synthesis of imidazole-triphenylamine based organic materials for dye sensitized solar cells. in: Materials letters. 2019 ; Jahrgang 242. S. 28-31.
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abstract = "Two imidazole – triphenylamine based organic dyes (SD1 and SD2) configured with donor -donor-π-acceptor (D 2 -π-A) structures with reported dye material namely TPA B5 were synthesized using different acceptor units and characterized by various spectroscopic techniques. The optical and electrochemical behavior of the dyes was systematically analyzed. The obtained results were compared with TPA B5 and found that, these dyes are considered to have proper electronic energy levels as promising sensitizers in dye sensitized solar cells (DSC's). This work could facilitate the development of new way to improve the performance of anchoring units. ",
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AU - Sambathkumar, S.

AU - Priyadharshini, S.

AU - Fleisch, Manuel Marco Romanus

AU - Bahnemann, Detlef

AU - Gnana Kumar, G.

AU - Senthilarasu, S.

AU - Renganathan, R.

N1 - Funding information: S.S. thanks to Department of Science and Technology (DST), Fund for Improvement of S&T Infrastructure (FIST), Ministry of Science and Technology, Government of India for the financial support under DST FIST Program 2017 level ‘0’ (SR/FST/College – 111/2017; Dt. 16.01.2018). S.S. thanks to Department of Science and Technology (DST), Fund for Improvement of S&T Infrastructure (FIST), Ministry of Science and Technology, Government of India for the financial support under DST FIST Program 2017 level ‘0’ (SR/FST/College – 111/2017; Dt. 16.01.2018).

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