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Molecular-scale thermoelectricity: as simple as 'ABC'.
Ismael, Ali; Al-Jobory, Alaa; Wang, Xintai; Alshehab, Abdullah; Almutlg, Ahmad; Alshammari, Majed; Grace, Iain; Benett, Troy L R; Wilkinson, Luke A; Robinson, Benjamin J; Long, Nicholas J; Lambert, Colin.
Afiliação
  • Ismael A; Department of Physics, Lancaster University Lancaster LA1 4YB UK k.ismael@lancaster.ac.uk.
  • Al-Jobory A; Department of Physics, College of Education for Pure Science, Tikrit University Tikrit Iraq.
  • Wang X; Department of Physics, Lancaster University Lancaster LA1 4YB UK k.ismael@lancaster.ac.uk.
  • Alshehab A; Department of Physics, College of Science, University of Anbar Anbar Iraq.
  • Almutlg A; Department of Physics, Lancaster University Lancaster LA1 4YB UK k.ismael@lancaster.ac.uk.
  • Alshammari M; Department of Physics, Lancaster University Lancaster LA1 4YB UK k.ismael@lancaster.ac.uk.
  • Grace I; Department of Physics, Lancaster University Lancaster LA1 4YB UK k.ismael@lancaster.ac.uk.
  • Benett TLR; Department of Physics, Lancaster University Lancaster LA1 4YB UK k.ismael@lancaster.ac.uk.
  • Wilkinson LA; Department of Physics, Lancaster University Lancaster LA1 4YB UK k.ismael@lancaster.ac.uk.
  • Robinson BJ; Department of Chemistry, Imperial College London, MSRH White City London W12 0BZ UK.
  • Long NJ; Department of Chemistry, Imperial College London, MSRH White City London W12 0BZ UK.
  • Lambert C; Department of Physics, Lancaster University Lancaster LA1 4YB UK k.ismael@lancaster.ac.uk.
Nanoscale Adv ; 2(11): 5329-5334, 2020 Nov 11.
Article em En | MEDLINE | ID: mdl-36132050
ABSTRACT
If the Seebeck coefficient of single molecules or self-assembled monolayers (SAMs) could be predicted from measurements of their conductance-voltage (G-V) characteristics alone, then the experimentally more difficult task of creating a set-up to measure their thermoelectric properties could be avoided. This article highlights a novel strategy for predicting an upper bound to the Seebeck coefficient of single molecules or SAMs, from measurements of their G-V characteristics. The theory begins by making a fit to measured G-V curves using three fitting parameters, denoted a, b, c. This 'ABC' theory then predicts a maximum value for the magnitude of the corresponding Seebeck coefficient. This is a useful material parameter, because if the predicted upper bound is large, then the material would warrant further investigation using a full Seebeck-measurement setup. On the other hand, if the upper bound is small, then the material would not be promising and this much more technically demanding set of measurements would be avoided. Histograms of predicted Seebeck coefficients are compared with histograms of measured Seebeck coefficients for six different SAMs, formed from anthracene-based molecules with different anchor groups and are shown to be in excellent agreement.

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Tipo de estudo: Prognostic_studies Idioma: En Revista: Nanoscale Adv Ano de publicação: 2020 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Tipo de estudo: Prognostic_studies Idioma: En Revista: Nanoscale Adv Ano de publicação: 2020 Tipo de documento: Article