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Zeolite Confined Ti(OH)4 Nanoparticles in Highly Active and Selective Oxidation Catalyst

机译:高活性和选择性氧化催化剂中的沸石约束Ti(OH) 4 纳米颗粒

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摘要

Abstract Some highly active, hydrophilic, MFI structured titanium silicate catalysts are characterized by an intense UV absorption centered in the 213–233 nm (43000–47000 cm−1) range. The assignment of this band to a specific molecular structure has remained unclear unlike the well published 233 nm UV bands of higher coordinated Ti-atoms at lattice defects or in variously agglomerated extra lattice Ti x O y (OH) z species. To decipher the structural origin of this intermediate UV band, we used Time-Dependent Density Functional Theory (TD-DFT) to compute the UV spectra of various model compositions and show in this paper that only one model, in which isolated tetrahedral Ti(OH)4 molecules reside in the zeolite channels without any covalent bond to the framework, fits the experimental UV spectrum. Hence these confined tetrahedral Ti(OH)4 nanoparticles may account for the enhanced activity and selectivity of some MFI type titanium silicate catalysts.
机译:摘要一些高活性,亲水性,MFI结构的硅酸钛催化剂的特征是在213-233 nm(43000-47000 cm -1 )范围内具有强烈的紫外线吸收。与在晶格缺陷处或在各种聚集的额外晶格Ti x O y中具有较高配位的Ti原子的233 nm UV波段已广为人知的情况不同,该带对特定分子结构的分配仍不清楚。 (OH) z 物种。为了解释该中间紫外线带的结构起源,我们使用时变密度泛函理论(TD-DFT)来计算各种模型组成的紫外线光谱,并在本文中表明只有一个模型,其中分离出四面体Ti(OH) ) 4 分子驻留在沸石通道中,没有任何共价键键合到骨架上,符合实验UV光谱。因此,这些受限的四面体Ti(OH) 4 纳米颗粒可能解释了某些MFI型硅酸钛催化剂的活性和选择性提高。

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