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      Recent Progress in Semiconductor-Based Nanocomposite Photocatalysts for Solar-to-Chemical Energy Conversion

      1 , 2 , 1 , 1 , 2
      Advanced Energy Materials
      Wiley

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          How a century of ammonia synthesis changed the world

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            Photocatalytic Reduction of CO2on TiO2and Other Semiconductors

            Rising atmospheric levels of carbon dioxide and the depletion of fossil fuel reserves raise serious concerns about the ensuing effects on the global climate and future energy supply. Utilizing the abundant solar energy to convert CO2 into fuels such as methane or methanol could address both problems simultaneously as well as provide a convenient means of energy storage. In this Review, current approaches for the heterogeneous photocatalytic reduction of CO2 on TiO2 and other metal oxide, oxynitride, sulfide, and phosphide semiconductors are presented. Research in this field is focused primarily on the development of novel nanostructured photocatalytic materials and on the investigation of the mechanism of the process, from light absorption through charge separation and transport to CO2 reduction pathways. The measures used to quantify the efficiency of the process are also discussed in detail.
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              Photocatalytic Water Splitting: Recent Progress and Future Challenges

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                Author and article information

                Journal
                Advanced Energy Materials
                Adv. Energy Mater.
                Wiley
                16146832
                December 2017
                December 2017
                September 28 2017
                : 7
                : 23
                : 1700529
                Affiliations
                [1 ]Beijing National Laboratory of Molecular Sciences; State Key Laboratory for Structural Chemistry of Unstable and Stable Species; College of Chemistry and Molecular Engineering; Peking University; Beijing 100871 P. R. China
                [2 ]Academy for Advanced Interdisciplinary Studies; Peking University; Beijing 100871 P. R. China
                Article
                10.1002/aenm.201700529
                32f1dba9-4ee1-40ba-921f-da5a3f30b028
                © 2017

                http://doi.wiley.com/10.1002/tdm_license_1.1

                http://onlinelibrary.wiley.com/termsAndConditions#vor

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