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首页> 外文期刊>Structural Chemistry >Carbon-doped boron-nitride fullerenes as efficient metal-free catalysts for oxidation of SO2: a DFT study
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Carbon-doped boron-nitride fullerenes as efficient metal-free catalysts for oxidation of SO2: a DFT study

机译:碳掺杂的硼 - 氮化物富勒烯作为无效的无金属催化剂,用于氧化SO2:DFT研究

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摘要

The aim of this study is to explore the potential of utilizing carbon-doped fullerene-like boron-nitride nanocages (B11N12C and B12N11C) as an efficient metal-free catalyst for the oxidation of SO2 to SO3 molecule in the presence of N2O. The oxidation of SO2 over B11N12C includes two steps. First, the N2O molecule is decomposed into an activated oxygen atom (O*) and N-2 molecule, and then the SO2 molecule is oxidized by the O* species. In the case of B12N11C and B12N12, however, the reaction starts with the coadsorption of SO2 and N2O molecules, followed by the decomposition of N2O and the formation of SO3 and N-2 species. According to our results, B11N12C exhibits larger catalytic activity for the SO2 oxidation compared with B12N11C and B12N12 clusters. The estimated activation energy for the SO2 + O* - SO3 reaction catalyzed over the B11N12C surface is 5.8 kcal/mol, which is comparable with those reported about noble-metal catalysts. The results of this study can be useful for developing metal-free catalysts based on C-doped BN nanostructures.
机译:本研究的目的是探讨利用碳掺杂的富勒烯硼 - 氮化纳米病(B11n12C和B12N11C)作为在N 2 O存在下为SO2至SO3分子氧化的有效金属的催化剂。在B11n12C上氧化SO2包括两个步骤。首先,将N2O分子分解成活性氧原子(O *)和N-2分子,然后通过O *物种氧化SO2分子。然而,在B12N11C和B12N12的情况下,反应从SO2和N2O分子的共吸收开始,然后分解N2O和SO 3和N-2种的形成。根据我们的结果,与B12N11C和B12N12簇相比,B11N12C对SO2氧化表现出更大的催化活性。 SO2 + O * - &gt的估计激活能量; SO 3在B11N12C表面上催化的反应是5.8kcal / mol,其与报告贵金属催化剂的那些相当。该研究的结果可用于基于C掺杂的BN纳米结构显影无金属催化剂。

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