Organic Photovoltaic

Organic photovoltaics are solar cells that convert light into electricity using carbon-based semiconducting materials, offering a lightweight and potentially flexible alternative to conventional inorganic devices. When light is absorbed, it generates excitons, or bound electron–hole pairs, which diffuse to a donor–acceptor interface; there, charge separation occurs, and the resulting electrons and holes travel through selective transport layers to opposite electrodes. In engineering, organic photovoltaics support applications requiring flexible, semitransparent, or low-temperature-processed power sources, including wearable electronics, building-integrated systems, and indoor energy harvesting. Their practical development depends on improving efficiency, operational stability, and resistance to environmental degradation.

Organic Photovoltaic - Related Videos

Research

JoVE Journal - Engineering

Concurrent Quantitative Conductivity and Mechanical Properties Measurements of Organic Photovoltaic Materials using AFM

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Cited by 3 •

2013

Organic photovoltaic (OPV) materials are inherently inhomogeneous at the nanometer scale. Nanoscale inhomogeneity of OPV materials affects performance of photovoltaic devices. In this paper, we describe a protocol for quantitative measurements of electrical and mechanical properties of OPV materials with sub-100 nm resolution.

Fabrication of Fully Solution Processed Inorganic Nanocrystal Photovoltaic Devices

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Cited by 4 •

2016

This protocol describes the synthesis and solution deposition of inorganic nanocrystals layer by layer to produce thin film electronics on non-conductive surfaces. Solvent-stabilized inks can produce complete photovoltaic devices on glass substrates via spin and spray coating following post-deposition ligand exchange and sintering.

Recombination Dynamics in Thin-film Photovoltaic Materials via Time-resolved Microwave Conductivity

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Cited by 2 •

2017

A Time Resolved Microwave Conductivity technique for investigating direct and trap-mediated recombination dynamics and determining carrier mobilities of thin film semiconductors is presented here.

Fabrication of High Contrast Gratings for the Spectrum Splitting Dispersive Element in a Concentrated Photovoltaic System

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2015

The fabrication of high contrast gratings as the parallel spectrum splitting dispersive element in a concentrated photovoltaic system is demonstrated. Fabrication processes including nanoimprint lithography, TiO2 sputtering and reactive ion etching are described. Reflectance measurement results are used to characterize the optical performance.

Research

JoVE Journal - Engineering
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Indoor Experimental Assessment of the Efficiency and Irradiance Spot of the Achromatic Doublet on Glass (ADG) Fresnel Lens for Concentrating Photovoltaics

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Cited by 3 •

2017

The achromatic doublet on glass (ADG) Fresnel lens makes use of two materials with differing dispersion to reduce chromatic aberration and increase attainable concentration. In this paper, a protocol for the complete characterization of the ADG Fresnel lens is presented.

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