Layered Composite Thin Films for Cost Effective Transparent Organic Solar Cell Electrodes
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Description
– Layered Composite Thin Films for Cost Effective Transparent Organic Solar Cell Electrodes –
Download Layered Composite Thin Films for Cost Effective Transparent Organic Solar Cell Electrodes. Materials Science and Engineering students who are writing their projects can get this material to aid their research work.
Abstract
In this dissertation, two main themes are explored. In the first part, some phenomenologies of light transport across the ZnO/Al/ZnO (ZAZ) thin-film multilayer structures are investigated.
The multilayered ZAZ thin-film composite structures are explored for potential applications as transparent electrodes (TEs) alternatives to the costly transparent indium-doped-tin-oxide (ITO) anodes that are used currently in organic solar cells (OSCs), organic light-emitting devices (OLEDs), and a variety of other layered optoelectronic structures.
The transmission characteristics and the optimum interlayer thicknesses of ZAZ thin-film structures were numerically predicted in this part of the project. Computational modeling and simulations were used successfully to study the transmittances (Ts) of the multilayered ZAZ thin-film composite stacks with intermediate aluminum (Al) layer thicknesses between ~ 1 – 100 nm.
Introduction
Environmentally benign renewable energy resources must provide a good alternative energy source. Renewable energy is produced from natural resources such as sunlight, wind, rivers, biomass, and geothermal sources, which are naturally replenished.
Depending on its nature, sunlight is one of the most competitive renewable energy sources. It is a long-life, environmentally indisputable energy source that is conveniently accessible from nearly everywhere on earth.
Some evidence-based figures to give the novelty of photovoltaic (PV) solar cell technology potentials exist. For example, the total energy consumption on earth in 2009 was ~ J,[1] which is equivalent to ~ 1 hour of the annual solar energy supply to the earth.
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