Your browser doesn't support javascript.
loading
The effect of organic cations on the electronic, optical and luminescence properties of 1D piperidinium, pyridinium, and 3-hydroxypyridinium lead trihalides.
Selivanov, N I; Rozhkova, Yu A; Kevorkyants, R; Emeline, A V; Bahnemann, D W.
Afiliação
  • Selivanov NI; Laboratory of Photoactive Nanocomposite Materials, St. Petersburg State University, Ulyanovskaya 1, St. Petersburg, 198504, Russia. selivanov_chem@mail.ru ruslan.kevorkyants@gmail.com.
  • Rozhkova YA; Laboratory of Photoactive Nanocomposite Materials, St. Petersburg State University, Ulyanovskaya 1, St. Petersburg, 198504, Russia. selivanov_chem@mail.ru ruslan.kevorkyants@gmail.com.
  • Kevorkyants R; Laboratory of Photoactive Nanocomposite Materials, St. Petersburg State University, Ulyanovskaya 1, St. Petersburg, 198504, Russia. selivanov_chem@mail.ru ruslan.kevorkyants@gmail.com.
  • Emeline AV; Laboratory of Photoactive Nanocomposite Materials, St. Petersburg State University, Ulyanovskaya 1, St. Petersburg, 198504, Russia. selivanov_chem@mail.ru ruslan.kevorkyants@gmail.com.
  • Bahnemann DW; Laboratory of Photoactive Nanocomposite Materials, St. Petersburg State University, Ulyanovskaya 1, St. Petersburg, 198504, Russia. selivanov_chem@mail.ru ruslan.kevorkyants@gmail.com and Leibniz University of Hannover, Callinstrasse 3, Hannover 30167, Germany.
Dalton Trans ; 49(14): 4390-4403, 2020 Apr 07.
Article em En | MEDLINE | ID: mdl-32175538
ABSTRACT
We present a structural and optoelectronic study of 1D piperidinium, pyridinium, and 3-hydroxypyridinium lead trihalides. In contrast to the piperidinium and pyridinium species whose single inorganic chains [PbX31-]n are separated by organic cations, the 3-hydroxypyridinium compound is characterized by double inorganic chains. According to DFT the valence and conduction bands of the piperidinium lead trihalides are composed of occupied p-orbitals of the halogen anions and unoccupied p-orbitals of the Pb2+ cations. In contrast, the pyridinium species feature low-lying cationic energy levels formed from the cation's π*-orbitals. Thus, electronic transitions between the cationic energy levels and valence bands require less energy than valence to conduction band transitions in the case of piperidinium lead trihalides. The presence of an OH group in the pyridinium ring leads to a bathochromic shift of the cationic energy levels resulting in a decreased energy of transitions from the cationic energy levels to the valence band. Electronic transitions predicted by DFT are observable in experimental optical absorption and luminescence spectra. This study paves the way for creation of 1D perovskite-like structures with desired optoelectronic properties.

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2020 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2020 Tipo de documento: Article