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Journal ArticleDOI

A low-cost, high-efficiency solar cell based on dye-sensitized colloidal TiO2 films

TLDR
In this article, the authors describe a photovoltaic cell, created from low-to medium-purity materials through low-cost processes, which exhibits a commercially realistic energy-conversion efficiency.
Abstract
THE large-scale use of photovoltaic devices for electricity generation is prohibitively expensive at present: generation from existing commercial devices costs about ten times more than conventional methods1. Here we describe a photovoltaic cell, created from low-to medium-purity materials through low-cost processes, which exhibits a commercially realistic energy-conversion efficiency. The device is based on a 10-µm-thick, optically transparent film of titanium dioxide particles a few nanometres in size, coated with a monolayer of a charge-transfer dye to sensitize the film for light harvesting. Because of the high surface area of the semiconductor film and the ideal spectral characteristics of the dye, the device harvests a high proportion of the incident solar energy flux (46%) and shows exceptionally high efficiencies for the conversion of incident photons to electrical current (more than 80%). The overall light-to-electric energy conversion yield is 7.1-7.9% in simulated solar light and 12% in diffuse daylight. The large current densities (greater than 12 mA cm-2) and exceptional stability (sustaining at least five million turnovers without decomposition), as well as the low cost, make practical applications feasible.

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Citations
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Journal ArticleDOI

Challenges and Prospects in Solar Water Splitting and CO2 Reduction with Inorganic and Hybrid Nanostructures

TL;DR: In this paper, the authors focused on the heterogeneous photocatalytic water splitting and on CO2 reduction with nanostructured semiconductors, metals, and their hybrids.
Journal ArticleDOI

Spectroscopic Determination of Electron and Hole Effective Masses in a Nanocrystalline Semiconductor Film

TL;DR: In this article, the absolute energy of the valence and conduction band edges of a transparent nanocrystalline semiconductor electrode was determined using spectroelectrochemical techniques.
Journal ArticleDOI

Review of recent trends in photoelectrocatalytic conversion of solar energy to electricity and hydrogen

TL;DR: A review of the recent trends in the photoelectrocatalytic conversion of solar energy into electricity or hydrogen can be found in this article, where the basic principles and the design of devices are presented.
Journal ArticleDOI

Organic photovoltaics: a chemical approach

TL;DR: In this review, the fundamental contribution of chemistry to the multidisciplinary field of organic photovoltaics is presented in a systematic way through the wide variety of organic compounds synthesized to be successfully used inPhotovoltaic devices.
Journal ArticleDOI

Colloidal Quantum Dot Photovoltaics: A Path Forward

TL;DR: A prescription is closed with a prescription, expressed as bounds on the density and energy of electronic states within the CQD film band gap, that should allow device efficiencies to rise to those required for the future of the solar energy field.
References
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Journal ArticleDOI

Electrochemical Photolysis of Water at a Semiconductor Electrode

TL;DR: Water photolysis is investigated by exploiting the fact that water is transparent to visible light and cannot be decomposed directly, but only by radiation with wavelengths shorter than 190 nm.
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Vectorial electron injection into transparent semiconductor membranes and electric field effects on the dynamics of light-induced charge separation

TL;DR: In this article, the dynamics of charge recombination following electron injection from the excited state of RuL{sub 3} into the conduction band of the semiconductor were examined under potentiostatic control of the electric field within the space charge layer of the membrane.
Journal ArticleDOI

The impact of semiconductors on the concepts of electrochemistry

TL;DR: In this article, it was realized that semiconductor electrodes behave differently in many respects and offer new insights into the role played by the electronic properties of a solid in its electrochemical reactivity.
Journal ArticleDOI

Electrochemistry and photochemistry of MoS2 layer crystals. I

TL;DR: In this article, the chemical and photochemical behavior of MoS 2 -van der Waals surfaces in contact with an aqueous electrolyte has been investigated by means of electrochemical techniques.
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