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THE SYNTHESIS OF ORGANIC FUEL WITH CO2 AND H2O ON TiO2 SURFACE GRAFTED IN THE CARBON NANOTUBE: A DFT STUDY

机译:用CO2和H2O在碳纳米管中接枝的CO2和H 2 O合成有机燃料:DFT研究

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The rapid increase in atmospheric CO2 leads to climate change, and it is urgent to reduce the accumulation of CO2 in the atmosphere [1]. Photoreduction of CO2 is a possible avenue to convert CO2. A number of researches focused on the photocatalytic reduction of CO2 with H2O [2-8]. The design of highly effcient and selective photocatalytic systems for the reduction of CO2 with H2O is of vital interest. Titania is one of the most widely used semiconductors for this purpose due to its strong oxidizing power, nontoxicity, and long-term photostability [9]. However, the activity of pure titania is not high enough for practical use in the photocatalytic reduction of CO2 with H2O [10]. Previous studies have demonstrated that the addition of multi-walled carbon nanotuoes (MWCNTs) as supports for TiO2 could improve the efficiency of the photocatalytic degradation of organ ics [11]. So, we want to investigate the reduction of CO2 with H2O catalyzed with the TiO2 grafted in the carbon nanotubc. This paper represents the dissociation of water into adsorbed OH and H on TiO2(l 10) surface, and it is the prelimmary work in the whole work.
机译:大气二氧化碳的快速增加导致气候变化,迫切需要减少大气中CO2的积累[1]。 CO2的光敏是转换CO2的可能途径。许多研究专注于用H2O [2-8]的CO 2的光催化还原。高效性和选择性光催化系统的设计,用于减少CO 2与H2O具有重要的兴趣。 Titania是由于其强氧化功率,无毒性和长期光稳定性(长期光稳定性而最广泛使用的半导体之一[9]。然而,纯钛的活性不足以足够高,因为在具有H2O [10]的CO 2的光催化还原中的实际应用。以前的研究表明,添加多壁碳纳米诺(MWCNT)作为TiO 2的载体可以提高器官IC的光催化降解的效率[11]。因此,我们希望研究催化在碳纳米管中接枝的TiO 2的H 2 O的CO 2的减少。本文代表了水中的溶液在TiO 2(L10)表面上的脱离,并且是整个工作中的预先工作。

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