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首页> 外文期刊>ACS Omega >In Situ Spectroscopic and Computational Studies on a MnO2–CuO Catalyst for Use in Volatile Organic Compound Decomposition
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In Situ Spectroscopic and Computational Studies on a MnO2–CuO Catalyst for Use in Volatile Organic Compound Decomposition

机译:用于挥发性有机化合物分解的MnO 2 -CuO催化剂的原位光谱和计算研究

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In situ near-edge X-ray absorption fine structure (NEXAFS) spectroscopy and density functional theory calculations were conducted to demonstrate the decomposition mechanism of propylene glycol methyl ether acetate (PGMEA) on a MnO_(2)–CuO catalyst. The catalytic activity of MnO_(2)–CuO was higher than that of MnO_(2) at low temperatures, although the pore properties of MnO_(2) were similar to those of MnO_(2)–CuO. In addition, whereas the chemical state of MnO_(2) remained constant following PGMEA dosing at 150 °C, MnO_(2)–CuO was reduced under identical conditions, as confirmed by in situ NEXAFS spectroscopy. These results indicate that the presence of Cu in the MnO_(2)–CuO catalyst enables the release of oxygen at lower temperatures. More specifically, the released oxygen originated from the Mn– O –Cu moiety on the top layer of the MnO_(2)–CuO structure, as confirmed by calculation of the oxygen release energies in various oxygen positions of MnO_(2)–CuO. Furthermore, the spectral changes in the in situ NEXAFS spectrum of MnO_(2)–CuO following the catalytic reaction at 150 °C corresponded well with those of the simulated NEXAFS spectrum following oxygen release from Mn– O –Cu. Finally, after the completion of the catalytic reaction, the quantities of lactone and ether functionalities in PGMEA decreased, whereas the formation of C═C bonds was observed.
机译:进行了原位近边缘X射线吸收精细结构(NEXAFS)光谱和密度泛函理论计算,以证明丙二​​醇甲醚乙酸酯(PGMEA)在MnO_(2)–CuO催化剂上的分解机理。 MnO_(2)–CuO在低温下的催化活性高于MnO_(2),尽管MnO_(2)的孔隙性质与MnO_(2)–CuO的相似。此外,尽管原位NEXAFS光谱证实,在PGMEA剂量为150°C后,MnO_(2)的化学状态保持不变,但MnO_(2)-CuO在相同条件下被还原。这些结果表明,MnO_(2)–CuO催化剂中存在Cu可以在较低温度下释放氧气。更具体地讲,释放的氧源自MnO_(2)-CuO结构顶层的Mn-O-Cu部分,这通过计算MnO_(2)-CuO各个氧位置上的氧释放能来确定。此外,MnO_(2)-CuO在150°C催化反应后原位NEXAFS光谱的光谱变化与模拟的NEXAFS光谱随氧气从Mn-O -Cu释放的光谱变化非常吻合。最后,催化反应完成后,PGMEA中内酯和醚官能团的数量减少,而观察到C═C键的形成。

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