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一种热稳定的基于Pt/Y的金属有机框架:使用H₂O、CH₃OH和CH₃CN作为探针,通过光谱方法探索金属中心的可及性。

A thermally stable Pt/Y-based metal-organic framework: Exploring the accessibility of the metal centers with spectroscopic methods using H2O, CH3OH, and CH3CN as probes.

作者信息

Szeto Kai Chung, Lillerud Karl Petter, Tilset Mats, Bjørgen Morten, Prestipino Carmelo, Zecchina Adriano, Lamberti Carlo, Bordiga Silvia

机构信息

Department of Chemistry, University of Oslo, PO Box 1033, N-0315, Oslo, Norway.

出版信息

J Phys Chem B. 2006 Nov 2;110(43):21509-20. doi: 10.1021/jp0634611.

Abstract

A metal-organic framework (MOF) based on Pt, Y, and 2,2'-bipyridine-5,5'-dicarboxylate (BPDC), stable up to 400 degrees C, has been synthesized and characterized. In this MOF, the Pt centers are coordinated to Cl and the N atoms of the BPDC unit, giving a local environment similar to that found in a series of Pt-organic complexes with catalytic activity toward C-H bond cleavage of alkanes. This new material is a heterogeneous counterpart to the corresponding metal-organic complex. The structure, determined by single-crystal XRD data, is the repetition of three covalently bonded layers. These layers form a block, which is stacking as an (a)(b)(c) sequence along the crystallographic b-axis. Each layer contains the Pt-organic unit, while Y atoms represent the connection between adjacent layers. No covalent connection is present between layer (a) of a block and layer (c) of an adjacent block. EXAFS (BM29 at the ESRF) analysis supports the XRD data. As this MOF crystallizes under hydrothermal conditions, water acts both as solvent and as a direct ligand of Y. Accessibility to the metal centers is demonstrated by reversible water desorption/readsorption, as determined by TPA/TPD, FTIR, UV-vis, EXAFS, and XANES. Importantly, the results show that the as-synthesized material will not suffer a permanent loss in porosity upon solvent removal. In addition to water, methanol, ethanol, and acetonitrile can also access the internal void of the dehydrated phase.

摘要

一种基于铂(Pt)、钇(Y)和2,2'-联吡啶-5,5'-二羧酸酯(BPDC)的金属有机框架(MOF)已被合成并表征,其在高达400摄氏度的温度下仍保持稳定。在这种MOF中,铂中心与BPDC单元的氯原子和氮原子配位,形成了与一系列对烷烃C-H键裂解具有催化活性的铂有机配合物中类似的局部环境。这种新材料是相应金属有机配合物的多相类似物。由单晶XRD数据确定的结构是三个共价键合层的重复。这些层形成一个块体,该块体沿晶体学b轴以(a)(b)(c)序列堆叠。每层都包含铂有机单元,而钇原子代表相邻层之间的连接。一个块体的(a)层与相邻块体的(c)层之间不存在共价连接。扩展X射线吸收精细结构(ESRF的BM29处)分析支持XRD数据。由于这种MOF在水热条件下结晶,水既作为溶剂又作为钇的直接配体。通过TPA/TPD、FTIR、UV-vis、EXAFS和XANES测定,可逆的水脱附/再吸附证明了对金属中心的可及性。重要的是,结果表明,合成后的材料在去除溶剂后不会永久性地丧失孔隙率。除了水之外,甲醇、乙醇和乙腈也可以进入脱水相的内部空隙。

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