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xiejf專家顧問 (文學泰斗)
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[資源]
Chem. Soc. Rev.最新綜述:用于光電催化和光催化水分解的無機納米結(jié)構(gòu)
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最新一期的Chem. Soc. Rev.刊發(fā)了由美國加州大學戴維斯分校的大牛Frank E. Osterloh撰寫的題為Inorganic nanostructures for photoelectrochemical and photocatalytic water splitting的綜述,詳細的總結(jié)了無機納米結(jié)構(gòu)在光電催化和光催化領(lǐng)域的研究進展。文章25頁,引文315篇。 The increasing human need for clean and renewable energy has stimulated research in artificial photosynthesis, and in particular water photoelectrolysis as a pathway to hydrogen fuel. Nanostructured devices are widely regarded as an opportunity to improve efficiency and lower costs, but as a detailed analysis shows, they also have considerably disadvantages. This article reviews the current state of research on nanoscale-enhanced photoelectrodes and photocatalysts for the water splitting reaction. The focus is on transition metal oxides with special emphasis of Fe2O3, but nitrides and chalcogenides, and main group element compounds, including carbon nitride and silicon, are also covered. The effects of nanostructuring on carrier generation and collection, multiple exciton generation, and quantum confinement are also discussed, as well as implications of particle size on surface recombination, on the size of space charge layers and on the possibility of controlling nanostructure energetics via potential determining ions. After a summary of electrocatalytic and plasmonic nanostructures, the review concludes with an outlook on the challenges in solar fuel generation with nanoscale inorganic materials. . GA.gif [ 來自科研家族 材料家族 ] [ Last edited by xiejf on 2012-10-21 at 13:32 ] |
先進材料 | nano physics&chem | 納米材料、介孔材料綜述文獻 | 納米化學/電化學綜述 |
光催化 材料 | 半導體光催化 | 能源_新材料 | 科技 |
新能源 | 科研與寫作 | 二氧化鈦相關(guān)資源 | nano review |
材料類文獻熱點 | 光催化 | 光催化與光電化學 | 催化相關(guān) |
光解水 | WJW科研之路 | 雜七雜八 | 精華區(qū) |
百寶箱 | 光電 | 資料 | 重要文獻 |
格物致知 | 催化 |
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