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Progress for High Performance Tandem Organic Solar Cells
Professor Chen (Nankai University, China) and his team explain the strategies behind their recent record-breaking organic solar cells, reaching a power conversion efficiency of 17.3%.
Advancements in Quantum Dot Solar Cells
Professor Sharma and colleagues review the synthesis and applications of this novel material. This includes a discussion of the unique properties of quantum dots and their suitability for solar cell applications, along with common synthesis techniques used to develop these
Recent Advances in Hybrid Halide Perovskites-based Solar Cells
For several decades, the need for an environmentally sustainable and commercially viable source of energy has driven extensive research aimed at achieving high efficiency power generation systems that can be manufactured at low cost.
Synthesis, Properties, and Applications of Perovskite-Phase Metal Oxide Nanostructures
Synthesis, Properties, and Applications of Perovskite-Phase Metal Oxide Nanostructures
Quantum Dots for Electronics and Energy Applications
In this article, the properties of some of the new non-cadmium based QDs along with different applications of QDs are summarized.
Understanding and Successfully Applying Materials for Dye-Sensitized Solar Cells
While dye sensitization as the basis for color photography has been accepted for a very long time,1 attempts to use this principle for the conversion of solar light to electricity generally had resulted only in very low photocurrents, below 100
Fullerenes for Bioscience & Photovoltaic Applications
Find various photovoltaic and bioscience-based applications of fullerenes.
Organic Photovoltaics in IoT, Architecture, and Wearables
Advances in OPV materials & device design; OPV technology as an energy source, enabling larger deployment of low-power, low-maintenance, & environmentally friendly hardware solutions is discussed.
Inverted Organic Photovoltaic Devices Using Zinc Oxide Nanocomposites as Electron Transporting Layer Materials
Organic photovoltaics (OPVs) represent a low-cost, lightweight, and scalable alternative to conventional solar cells. While significant progress has been made in the development of conventional bulk heterojunction cells, new approaches are required to achieve the performance and stability necessary to
Chemical Deposition Techniques in Materials Design
We presents an article regarding chemical deposition techniques in materials design.
Conducting Polymer Materials for Flexible OPV Applications: Orgacon™ PEDOT : PSS
A detailed article on conducting polymer materials for flexible organic photovoltaics (OPVs) applications.
High-Purity Sublimed Materials for Organic Electronic Devices
Sublimed materials for organic electronic devices such of OFETs and OTFTs allow the achievement of better electronic properties, and may help increase a device’s lifetime.
Titania Nanotubes: Synthesis & Apps
TiO2 exhibits wide band gap semiconductor and memristor properties electronically, with high opacity and UV absorbance optically.
Metal-Organic Frameworks in Energy
Metal-organic frameworks offer high surface area materials for alternative energy applications through simple synthetic strategies.
Materials for High and Low Refractive Index Coatings
Polymeric materials, with unique refractive index properties, find applications in photonics and optical coatings for various devices.
Nanoscale Light Harvesters: Solar Cells
Dye-sensitized solar cells as a promising, low-cost photovoltaic technology.
Metal Organic Frameworks (MOFs)
Metal-organic frameworks (MOFs) are porous, crystalline materials composed of metal ions bound by organic ligands.
Optoelectronic Devices with DPP-containing Molecules
Organic materials in optoelectronic devices like LEDs and solar cells are of significant academic and commercial interest.
Surface-enhanced Solar Energy Conversion Systems
Sustainable energy sources with high production efficiency are crucial for meeting increasing energy demand.
Dye-Sensitized and Perovskite Solar Cells
Continuous efficiency improvements in photovoltaic devices result from material advancements and manufacturing innovation.
Perovskite Metal Complexes in Photovoltaics
Solar panel demand surges for sustainable energy, with power output rising from 5.0 to 90 GWh/d from 2010 to 2016.
Fullerene-Based Semiconductors
Progress in bulk heterojunction photodiodes since 1995 has improved device performance and widened research scope.
A Review of Mesoporous TiO2 Thin Films
Titanium dioxide applications: Semiconducting material characteristics and diverse functionalities.
Ultra-High Efficiency Perovskite-Perovskite Tandem Solar Cells
Next generation solar cells have the potential to achieve conversion efficiencies beyond the Shockley-Queisser (S-Q) limit while also significantly lowering production costs.
Ruthenium-based dyes for Dye-sensitized Solar Cells
Dye-sensitized solar cells (DSCs) are 3rd generation solar cells combining the promise of high efficiency with low production costs.
Efficient Dye-sensitized Solar Cells for Direct Conversion of Sunlight to Electricity
Dye-sensitized solar cells directly convert sunlight to electricity
Few Monolayer Atomic Layer Deposition (ALD) on Surfaces and Interfaces for Energy Applications
Few Monolayer Atomic Layer Deposition (ALD) on Surfaces and Interfaces for Energy Applications
High Purity Metalorganic Precursors for Concentrator Photovoltaic Technologies Device Fabrication
Thin film photovoltaic devices have become increasingly important in efficiently harnessing solar energy to meet consumer demand.
Advances in Colloidal Quantum Dots for Applications in the Visible Spectrum
Colloidal quantum dots are nano-meter sized, single-crystalline semiconductor fragments that can have highly customizable optical, electronic, and chemical properties through controlled synthesis.
PCBM-Based n-Type Semiconductors
PCBM-based n-type semiconductors - Find p- and n-type organic semiconductors available with PCBM library & properties.
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