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      ZnO-based heterostructures as photocatalysts for hydrogen generation and depollution: a review

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          Electric Field Effect in Atomically Thin Carbon Films

          We describe monocrystalline graphitic films, which are a few atoms thick but are nonetheless stable under ambient conditions, metallic, and of remarkably high quality. The films are found to be a two-dimensional semimetal with a tiny overlap between valence and conductance bands, and they exhibit a strong ambipolar electric field effect such that electrons and holes in concentrations up to 10 13 per square centimeter and with room-temperature mobilities of ∼10,000 square centimeters per volt-second can be induced by applying gate voltage.
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            Semiconductor heterojunction photocatalysts: design, construction, and photocatalytic performances.

            Semiconductor-mediated photocatalysis has received tremendous attention as it holds great promise to address the worldwide energy and environmental issues. To overcome the serious drawbacks of fast charge recombination and the limited visible-light absorption of semiconductor photocatalysts, many strategies have been developed in the past few decades and the most widely used one is to develop photocatalytic heterojunctions. This review attempts to summarize the recent progress in the rational design and fabrication of heterojunction photocatalysts, such as the semiconductor-semiconductor heterojunction, the semiconductor-metal heterojunction, the semiconductor-carbon heterojunction and the multicomponent heterojunction. The photocatalytic properties of the four junction systems are also discussed in relation to the environmental and energy applications, such as degradation of pollutants, hydrogen generation and photocatalytic disinfection. This tutorial review ends with a summary and some perspectives on the challenges and new directions in this exciting and still emerging area of research.
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              A review on the visible light active titanium dioxide photocatalysts for environmental applications

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                Author and article information

                Contributors
                Journal
                Environmental Chemistry Letters
                Environ Chem Lett
                Springer Science and Business Media LLC
                1610-3653
                1610-3661
                April 2022
                January 14 2022
                April 2022
                : 20
                : 2
                : 1047-1081
                Article
                10.1007/s10311-021-01361-1
                775d50dd-cea6-4030-9694-70f30c9e3bf5
                © 2022

                https://www.springer.com/tdm

                https://www.springer.com/tdm

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