Landewatte Ajith DeSilva, Ph.D.

Dr. Ajith DeSilva is a Professor of physics. He received his PhD from the University of Cincinnati in 2006. Dr. DeSilva's research interest is in the area of experimental condensed matter physics. In particular he is studying optical and electrical properties of organic and organic/inorganic materials and devices. Some of the projects include: Organic Light Emitting Diodes (OLEDs), Polymer based micro-cavity structures, Waveguides and Solar cells. More information https://www.westga.edu/~ldesilva/

  • PhD, Physics, University of Cincinnati, 2006

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Transparent and conductive F-Doped SnO 2 nanostructured thin films by sequential nebulizer spray pyrolysis [View Publication External Resource]

Effect of 100 MeV Ni ion irradiation on CdZnTe thin films [View Publication External Resource]

Properties of tris (8-hydroxyquinoline) aluminum thin films fabricated by spin coating from static and dynamic dispense methods [View Publication External Resource]

Usage of Ionic Liquid Electrolyte in Tin and Zinc Oxide Composite Dye-sensitized Solar Cells [View Publication External Resource]

Demonstration of a Distributed Bragg Reflector for Polyvinylcarbazole and Cadmium Sulfide Layers: Modeling and Comparison to Ex [View Publication External Resource]

Evolution of the COVID Pandemic: A Technique for Mathematical Analysis of Data [View Publication External Resource]

Binary Counter Ion Effects and Dielectric Behavior of Iodide Ion Conducting Gel-Polymer Electrolytes for High-Efficiency Quasi-S [View Publication External Resource]

Determination of charge carrier transport parameters in a polymer electrolyte intended for Li-ion batteries using electrochemica [View Publication External Resource]

Measurement of Solar Spectral Irradiance and Surface Ozone at Carrollton, during Great American Eclipse on August 21st, 2017 [View Publication External Resource]

Optical Properties of Alq3/TiO2 BDR Structure Processed by Spin Coating Technique [View Publication External Resource]

The Voltammetric Hysteresis Behavior and Potential Scan Rate Dependence of a Dye Sensitized Solar Cells [View Publication External Resource]

High efficiency dye-sensitized solar cell based on a novel gel polymer electrolyte containing RbI and tetrahexylammonium iodide  [View Publication External Resource]

Host-Vector interaction in Dengue: Simple Mathematical Model [View Publication External Resource]

Synthesis of dense TiO2 nanoparticle multilayers using spin coating technique [View Publication External Resource]