Small Nonplanar Phenothiazine-5 -oxide-Based Molecules: Structural Characterization, Photophysical, Thermal and Computational Studies
Author:
Affiliation:
1. Department of Chemistry; University of Delhi; Delhi 110 007 India
2. Department of Chemistry; Indian Institute of Technology; Kharagpur 721 302 India
Funder
Research Council, University of Delhi, India
DST-FIST
Publisher
Wiley
Subject
General Chemistry
Reference91 articles.
1. Simple Phenanthroimidazole/Carbazole Hybrid Bipolar Host Materials for Highly Efficient Green and Yellow Phosphorescent Organic Light-Emitting Diodes
2. Controllable Growth and Field-Effect Property of Monolayer to Multilayer Microstripes of an Organic Semiconductor
3. Impedance Analysis of Inherently Redox-Active Ionic-Liquid-Based Photoelectrochemical Cells: Charge-Transfer Mechanism in the Presence of an Additional Redox Couple
4. Theoretical studies on the spectroscopic properties of porphyrin derivatives for dye-sensitized solar cell application
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