Polymeric Solar Cell with 19.69% Efficiency Based on Poly(o-phenylene diamine)/TiO2 Composites

Author:

Zoromba M.1,Abdel-Aziz M.12ORCID,Ghazy A.3ORCID,Salah N.4ORCID,Al-Hossainy A.5ORCID

Affiliation:

1. Chemical and Materials Engineering Department, King Abdulaziz University, Rabigh 21911, Saudi Arabia

2. Chemical Engineering Department, Faculty of Engineering, Alexandria University, Alexandria 21544, Egypt

3. Physics Department, Faculty of Science, Tanta University, Tanta 31527, Egypt

4. Center of Nanotechnology, King Abdulaziz University, Jeddah 21589, Saudi Arabia

5. Chemistry Department, Faculty of Science, New Valley University, Al-Kharga 72511, Egypt

Abstract

Conducting poly orthophenylene diamine polymer (PoPDA) was synthesized via the oxidative polymerization route. A poly(o-phenylene diamine) (PoPDA)/titanium dioxide nanoparticle mono nanocomposite [PoPDA/TiO2]MNC was synthesized using the sol–gel method. The physical vapor deposition (PVD) technique was successfully used to deposit the mono nanocomposite thin film with good adhesion and film thickness ≅ 100 ± 3 nm. The structural and morphological properties of the [PoPDA/TiO2]MNC thin films were studied by X-ray diffraction (XRD) and scanning electron microscope (SEM). The measured optical properties of the [PoPDA/TiO2]MNC thin films such as reflectance (R) in the UV–Vis-NIR spectrum, absorbance (Abs), and transmittance (T) were employed to probe the optical characteristics at room temperatures. As well as the calculations of TD-DFT (time-dependent density functional theory), optimization through the TD-DFTD/Mol3 and Cambridge Serial Total Energy Bundle (TD-DFT/CASTEP) was employed to study the geometrical characteristics. The dispersion of the refractive index was examined by the single oscillator Wemple–DiDomenico (WD) model. Moreover, the single oscillator energy (Eo), and the dispersion energy (Ed) were estimated. The obtained results show that thin films based on [PoPDA/TiO2]MNC can be utilized as a decent candidate material for solar cells and optoelectronic devices. The efficiency of the considered composites reached 19.69%.

Funder

Institutional Fund Projects under grant

Ministry of Education and King Abdulaziz University, DSR, Jeddah, Saudi Arabia

Publisher

MDPI AG

Subject

Polymers and Plastics,General Chemistry

Reference86 articles.

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