
Base-Free Synthesis and Photophysical Properties of New Schiff Bases Containing Indole Moiety
Author(s) -
Ahmed I. A. Soliman,
Mostafa Sayed,
Mahmoud M. Elshanawany,
Osama Younis,
Mostafa Ahmed,
Adel M. Kamal ElDean,
AboelMagd A. AbdelWahab,
Josef Wachtveitl,
Markus Braun,
Pedram Fatehi,
Mahmoud S. Tolba
Publication year - 2022
Publication title -
acs omega
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.779
H-Index - 40
ISSN - 2470-1343
DOI - 10.1021/acsomega.1c06636
Subject(s) - schiff base , catalysis , indole test , piperidine , chemistry , moiety , organic base , organic synthesis , combinatorial chemistry , hydrosilylation , substituent , organic chemistry , polymer chemistry
Schiff bases represent an essential class in organic chemistry with antitumor, antiviral, antifungal, and antibacterial activities. The synthesis of Schiff bases requires the presence of an organic base as a catalyst such as piperidine. Base-free synthesis of organic compounds using a heterogeneous catalyst has recently attracted more interest due to the facile procedure, high yield, and reusability of the used catalyst. Herein, we present a comparative study to synthesize new Schiff bases containing indole moieties using piperidine as an organic base catalyst and Au@TiO 2 as a heterogeneous catalyst. In both methods, the products were isolated in high yields and fully characterized using different spectral analysis techniques. The catalyst was reusable four times, and the activity was slightly decreased. The presence of Au increases the number of acidic sites of TiO 2 , resulting in C=O polarization. Yields of the prepared Schiff bases in the presence of Au@TiO 2 and piperidine were comparable. However, Au@TiO 2 is an easily separable and recyclable catalyst, which would facilitate the synthesis of organic compounds without applying any hazardous materials. Furthermore, the luminescence behavior of the synthesized Schiff bases exhibited spectral shape dependence on the substituent group. Interestingly, the compounds also displayed deep-blue fluorescence with Commission Internationale de l'Éclairage (CIE) coordinates of y < 0.1. Thus, these materials may contribute to decreasing the energy consumption of the emitting devices.