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Synthesis, characterization, crystal structure, and fabrication of photosensitive Schottky device of a binuclear Cu(ii)-Salen complex: a DFT investigations.
Majumdar, Dhrubajyoti; Gassoumi, Bouzid; Dey, Arka; Roy, Sourav; Ayachi, Sahbi; Hazra, Suman; Dalai, Sudipta.
Afiliação
  • Majumdar D; Department of Chemistry, Tamralipta Mahavidyalaya Tamluk-721636 West Bengal India dmajumdar30@gmail.com sudipta@mail.vidyasagar.ac.in.
  • Gassoumi B; Laboratory of Advanced Materials and Interfaces (LIMA), University of Monastir, Faculty of Sciences of Monastir Avenue of Environment 5000 Monastir Tunisia.
  • Dey A; Department of Physics, National Institute of Technology Durgapur Durgapur 713209 India.
  • Roy S; Solid State and Structural Chemistry Unit, Indian Institute of Science Bangalore-560012 India.
  • Ayachi S; Laboratory of Physico-Chemistry of Materials (LR01ES19), Faculty of Sciences, University of Monastir Avenue of the Environment 5019 Monastir Tunisia.
  • Hazra S; Department of Chemistry, Tamralipta Mahavidyalaya Tamluk-721636 West Bengal India dmajumdar30@gmail.com sudipta@mail.vidyasagar.ac.in.
  • Dalai S; Department of Chemistry, Vidyasagar University Midnapore-721102 West Bengal India.
RSC Adv ; 14(21): 14992-15007, 2024 May 02.
Article em En | MEDLINE | ID: mdl-38720988
ABSTRACT
This work explores one centrosymmetric binuclear Cu(ii)-Salen complex synthesis, characterization, photosensitive Schottky barrier diode (PSBD) function, and DFT spectrum. The crystal growth involves H2LSAL and Cu(NO3)2·3H2O in CH3OH + ACN (acetonitrile) solvent medium. Herein, structural characterization employs elemental, IR/Raman, NMR, UV-VIS, DRS, SEM-EDX, PXRD, SCXRD, and XPS analyses. The complex crystal size is 0.2 × 0.2 × 0.2, showing monoclinic space group C2/c. The dimeric unit contains two Cu(ii) centres with distorted square pyramidal (SQP) geometries. The crystal packing consists of weak C-H⋯O interactions. DFT and Hirshfeld surface (HS) further substantiated the packing interactions, providing valuable insights into the underlying mechanisms. The 2-D fingerprint plots showed the presence of N⋯H (3%) and O⋯H (8.2%) contacts in the molecular arrangement. NBO, QTAIM, ELF-LOL, and energy frameworks are utilized to investigate the bonding features of the complex. We extensively studied electrical conductivity and PSBD for H2LSAL and the complex based on band gap (3.09 and 3.07 eV). Like an SBD, the complex has better electrical conductivity, evidencing potentiality in optoelectronic device applications. Optical response enhances conductivity, according to I-V characteristics. Complex Schottky diode has lower barrier height, resistance, and higher conductivity under light. The complex transports charge carriers through space and is rationalized by the 'hopping process' and 'structure-activity-relationship' (SAR). The charge transport mechanism was analysed by estimating complex mobility (µeff), lifetime (τ), and diffusion length (LD). The experimental and theoretical DOS/PDOS plots provide evidence for the Schottky diode function of the complex.

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article