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Journal ArticleDOI

Photocatalysis on TiO2 Surfaces - Principles, Mechanisms, and Selected Results

Amy Linsebigler, +2 more
- 01 May 1995 - 
- Vol. 95, Iss: 3, pp 735-758
TLDR
In this article, the authors focus on interfacial processes and summarize some of the operating principles of heterogeneous photocatalysis systems, including the electron transfer and energy transfer processes in photocatalytic reactions.
Abstract
In 1972, Fujishima and Honda discovered the photocatalytic splitting of water on TiO{sub 2} electrodes. This event marked the beginning of a new era in heterogeneous photocatalysis. Since then, research efforts in understanding the fundamental processes and in enhancing the photocatalytic efficiency of TiO{sub 2} have come from extensive research performed by chemists, physicists, and chemical engineers. Such studies are often related to energy renewal and energy storage. In recent years, applications to environmental cleanup have been one of the most active areas in heterogeneous photocatalysis. This is inspired by the potential application of TiO{sub 2}-based photocatalysts for the total destruction of organic compounds in polluted air and wastewaters. There exists a vast body of literature dealing with the electron transfer and energy transfer processes in photocatalytic reactions. A detailed description of these processes is beyond the scope of this review. Here, the authors tend to focus on interfacial processes and to summarize some of the operating principles of heterogeneous photocatalysis. In section 2, the authors first look at the electronic excitation processes in a molecule and in a semiconductor substrate. The electronic interaction between the adsorbate molecule and the catalyst substrate is discussed in terms of the catalyzed ormore » sensitized photoreactions. In section 3, thermal and photocatalytic studies on TiO{sub 2} are summarized with emphasis on the common characteristics and fundamental principles of the TiO{sub 2}-based photocatalysis systems. In section 4, they address the research effort in the electronic modification of the semiconductor catalysts and its effect on the photocatalytic efficiency. Several representative examples will be presented including the Schottky barrier formation and modification at metal-semiconductor interfaces. Some concluding remarks and future research directions will be given in the final section. 160 refs.« less

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Journal ArticleDOI

Carbon functionalized TiO2 nanofibers for high efficiency photocatalysis

TL;DR: In this paper, the photocatalytic properties of the functional TiO2 and carbon nanocomposite were tested via the decomposition of an organic pollutant, and the catalytic activity of the covalently functionalized nanocomposition was found to be significantly enhanced in comparison to unfunctionalized composite and pristineTiO2 due to the synergistic effect of nanostructured TiO 2 and amorphous carbon bound via covalent bonds.
Journal ArticleDOI

Amplified photochemistry with slow photons

TL;DR: In this article, the effect of photonic properties on organic photochemistry was investigated by tracing out the wavelength-dependent rate of photoisomerization of azobenzene anchored on silica opals.
Journal ArticleDOI

Chemically exfoliated metallic MoS 2 nanosheets: A promising supporting co-catalyst for enhancing the photocatalytic performance of TiO 2 nanocrystals

TL;DR: In this article, the authors demonstrate that MoS2 nanosheets with 1T phase (i.e., octahedral phase) can function as a co-catalyst with multiple merits: (1) Noble metal-free; (2) high mobility for charge transport; (3) high density of active sites for H2 evolution on basal planes; (4) good performance stability; (5) high light transparency.
Journal ArticleDOI

TiO2−WO3 Photoelectrochemical Anticorrosion System with an Energy Storage Ability

TL;DR: In this article, a WO3 film on a type 304 stainless steel plate can be charged by a UV-irradiated TiO2 coating on the same plate, in a 3 wt % NaCl aqueous solution, pH 5.
Journal ArticleDOI

Heterogeneous Catalysis on Metal Oxides

Jacques C. Védrine
- 10 Nov 2017 - 
TL;DR: A review of the major types of metal oxide catalysts and the processes that use these catalysts, where recent advances in the science of metal dioxide catalysts have major economic and environmental impacts, is presented in this paper.
References
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Book

Classical Electrodynamics

Book

Principles of Instrumental Analysis

TL;DR: In this article, the authors present an overview of the main components of optical atomic spectrometers and their application in the field of surface characterization by Spectroscopy and Microscopy.

Solid state

Book

Photocatalysis: Fundamentals and Applications

TL;DR: In this paper, the reader is first introduced to the meaning of photocatalysis and subsequently taken through the essentials of photochemistry towards bridging it to semiconductor materials, followed by thermodynamic and kinetic aspects.
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