About
My research develops a multi-scale framework linking molecular design, charge transport, and exciton kinetics in organic semiconductors. I focus on TADF systems, combining impedance spectroscopy, optical spectroscopy, and device modeling to understand efficiency limits in OLEDs. Recent work explores reorganization-energy–driven exciton conversion and near-barrierless RISC, establishing design principles for high-efficiency optoelectronic materials.
Employment
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National Institute of Technology Karnataka Research Scholar2019 - Present
Education
Education history is unavailable.
Projects & Funding
Projects & funding information is unavailable.
Publications (214)
- Thermally activated delayed fluorescence based multifunctional host material for optoelectronics applications Save
- Transmission Electron Microscopy images for Cz+TPPO (S1) and TPA+DPPO (S4) Save
- complex optical constants as functions of wavelengths, of the thin film of $S_1$ and $S_4$ deposited on silicon, by spectroscopic ellipsometry. Save
- AFM data for S1 and S4 Save
- Cyclic Voltammetry of S1 and S4 Save
- DFT simulation of S1, S3 and S4 Save
- DRS spectra for S1, S3 and S4 Save
- DSC and TGA thermal properties of S1, S3 and S4 Save
- FESEM data and images for S1, S3, S4 Save
- FTIR data for S1, S3 and S4 Save