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确定纳米结构SAPO-5分子筛中铜离子的位置及其对氧化还原性质的影响。

Identifying the location of Cu ions in nanostructured SAPO-5 molecular sieves and its impact on the redox properties.

作者信息

Radnik Jörg, Dang Thi Thuy Hanh, Gatla Suresh, Raghuwanshi Vikram Singh, Tatchev Dragomir, Hoell Armin

机构信息

Federal Institute for Material Research and Testing (BAM) Unter den Eichen 44-46 12203 Berlin Germany

National Key Laboratory of Petrochemistry and Refinery Technologies, Vietnam Institute of Industrial Chemistry 2 Pham Ngu Lao Hanoi Vietnam.

出版信息

RSC Adv. 2019 Feb 22;9(12):6429-6437. doi: 10.1039/c8ra10417d.

Abstract

Combining X-ray Absorption Fine Spectroscopy (XAFS) with Anomalous Small-Angle X-ray Scattering (ASAXS) determines the location of Cu ions in silicoaluminophosphate (SAPO-5) frameworks prepared by hydrothermal crystallization or impregnation. As expected, for the hydrothermally prepared sample, incorporation in the SAPO-5 framework was observed. For the first time preferential location of Cu ions at the inner and outer surfaces of the framework is determined. Temperature-Programmed Reduction (TPR) and X-ray Photoelectron Spectroscopy (XPS) investigations demonstrated that such Cu is stable in an argon (Ar) atmosphere up to 550 °C and can only be reduced under a hydrogen atmosphere. In contrast, Cu deposited by impregnation on the pure SAPO-5 framework can be easily reduced to Cu in an Ar atmosphere. At lower Cu amounts, mononuclear tetrahedrally coordinated Cu species were formed which are relatively stable in the monovalent form. In contrast, at higher Cu amounts, CuO particles were found which change easily between the mono- and bivalent species.

摘要

将X射线吸收精细结构光谱(XAFS)与反常小角X射线散射(ASAXS)相结合,确定了通过水热结晶或浸渍法制备的硅铝磷酸盐(SAPO-5)骨架中铜离子的位置。正如预期的那样,对于水热制备的样品,观察到铜离子掺入了SAPO-5骨架中。首次确定了铜离子在骨架内外表面的优先位置。程序升温还原(TPR)和X射线光电子能谱(XPS)研究表明,这种铜在氩气(Ar)气氛中直至550°C都是稳定的,并且只能在氢气气氛下被还原。相比之下,通过浸渍法沉积在纯SAPO-5骨架上的铜在氩气气氛中很容易被还原为铜。在较低的铜含量下,形成了单核四面体配位的铜物种,它们以单价形式相对稳定。相比之下,在较高的铜含量下,发现了氧化铜颗粒,它们在单价和二价物种之间很容易发生变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a30d/9060918/70bd41c87806/c8ra10417d-f1.jpg

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