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首页> 外文期刊>Journal of the American Chemical Society >Deciphering the Phillips Catalyst by Orbital Analysis and Supervised Machine Learning from Cr Pre-edge XANES of Molecular Libraries
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Deciphering the Phillips Catalyst by Orbital Analysis and Supervised Machine Learning from Cr Pre-edge XANES of Molecular Libraries

机译:通过轨道分析和来自分子库的Cr预先尖尖的轨道分析和监督机器学习来解析菲利普斯催化剂

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摘要

Unveiling the nature and the distribution of surface sites in heterogeneous catalysts, and for the Phillips catalyst (CrO_3/SiO_2) in particular, is still a grand challenge despite more than 60 years of research. Commonly used references in Cr K-edge XANES spectral analysis rely on bulk materials (Cr-foil, Cr_2O_3) or molecules (CrCl_3) that significantly differ from actual surface sites. In this work, we built a library of Cr K-edge XANES spectra for a series of tailored molecular Cr complexes, varying in oxidation state, local coordination environment, and ligand strength. Quantitative analysis of the pre-edge region revealed the origin of the pre-edge shape and intensity distribution. In particular, the characteristic pre-edge splitting observed for Cr(Ⅲ) and Cr(Ⅳ) molecular complexes is directly related to the electronic exchange interactions in the frontier orbitals (spin-up and -down transitions). The series of experimental references was extended by theoretical spectra for potential active site structures and used for training the Extra Trees machine learning algorithm. The most informative features of the spectra (descriptors) were selected for the prediction of Cr oxidation states, mean interatomic distances in the first coordination sphere, and type of ligands. This set of descriptors was applied to uncover the site distribution in the Phillips catalyst at three different stages of the process. The freshly calcined catalyst consists of mainly Cr(Ⅵ) sites. The CO-exposed catalyst contains mainly Cr(Ⅱ) silicates with a minor fraction of Cr(Ⅲ) sites. The Phillips catalyst exposed to ethylene contains mainly highly coordinated Cr(Ⅲ) silicates along with unreduced Cr(Ⅵ) sites.
机译:揭示异质催化剂中表面位点的性质和分布,特别是菲利普斯催化剂(CRO_3 / SIO_2),尽管需要超过60年的研究,但仍然是一个大挑战。 CR K-Edge Xanes谱分析常用的常用引用依赖于与实际表面位点显着不同的散装材料(Cr-Foil,Cr_2O_3)或分子(CRCl_3)。在这项工作中,我们构建了一系列定制的分子Cr复合物的Cr K-Edge Xanes光谱库,在氧化状态,局部配位和配体强度下变化。预先边缘区域的定量分析显示了预先边缘形状和强度分布的起源。特别地,对Cr(Ⅲ)和Cr(Ⅵ)分子复合物观察到的特征预先分裂与前沿轨道(旋转和裁减转变)中的电子交换相互作用直接相关。该系列实验参考由理论光谱延伸,用于潜在的有源部位结构,用于训练额外的树木机器学习算法。选择光谱(描述符)的最具信息特征,用于预测CR氧化状态,在第一配位球中的平均间隙距离和配体的类型。应用这组描述符以在该过程的三个不同阶段揭示菲利普斯催化剂中的网站分布。新煅烧的催化剂主要由Cr(Ⅵ)位点组成。共露催化剂主要含有Cr(Ⅱ)硅酸盐,含有少量Cr(Ⅲ)的基位。暴露于乙烯的菲利普斯催化剂主要含有高度协调的Cr(Ⅲ)硅酸盐以及未更新的Cr(Ⅵ)位点。

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  • 来源
    《Journal of the American Chemical Society 》 |2021年第19期| 7326-7341| 共16页
  • 作者单位

    Department of Chemistry and Applied Biosciences ETH Zuerich CH-8093 Zuerich Switzerland;

    Department of Chemistry and Applied Biosciences ETH Zuerich CH-8093 Zuerich Switzerland;

    The Smart Materials Research Institute Southern Federal University Rostov-on-Don Russia 344090 Institute of Mathematics Mechanics and Computer Science Southern Federal University Rostov-on-Don Russia 344090;

    The Smart Materials Research Institute Southern Federal University Rostov-on-Don Russia 344090 Institute of Mathematics Mechanics and Computer Science Southern Federal University Rostov-on-Don Russia 344090;

    The Smart Materials Research Institute Southern Federal University Rostov-on-Don Russia 344090;

    Paul-Scherrer-Institute CH-S232 Villigen Switzerland;

    Paul-Scherrer-Institute CH-S232 Villigen Switzerland;

    The Smart Materials Research Institute Southern Federal University Rostov-on-Don Russia 344090;

    Department of Chemistry and Applied Biosciences ETH Zuerich CH-8093 Zuerich Switzerland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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