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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Formation of Mixed Metal Cu_(3-x)Zn_x(btc)2 Frameworks with Different Zinc Contents: Incorporation of Zn~(2+) into the Metal-Organic Framework Structure as Studied by Solid-State NMR
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Formation of Mixed Metal Cu_(3-x)Zn_x(btc)2 Frameworks with Different Zinc Contents: Incorporation of Zn~(2+) into the Metal-Organic Framework Structure as Studied by Solid-State NMR

机译:锌含量不同的混合金属Cu_(3-x)Zn_x(btc)2骨架的形成:通过固态NMR研究将Zn〜(2+)掺入金属有机骨架结构中

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摘要

Incorporation of Zn~(2+) into the Cu3(btc)2 metal-organic framework (HKUST-1) was successfully done with Zn~(2+) replacing Cu~(2+) in the paddle wheel unit up to 21% zinc. Detailed spectroscopic characterization of the resulting binuclear Cu-Zn paddle wheel units was carried out by ~1H and ~(13)C solid-state nuclear magnetic resonance (SSNMR). By intensity analysis of the NMR signals a quantitative determination of the Zn~(2+) content incorporated into the Cu3(btc)2 framework is possible. X-ray and EPR data verify the analysis. Surface areas were determined for the different samples that indicate a decreasing porosity with increasing zinc content. Water molecules coordinated to the zinc atoms remain in the structure even after evacuation. Their assignment was also confirmed by calculation of the pseudocontact or dipolar shift contribution from all unpaired electrons of surrounding paddle wheels.
机译:将Zn〜(2+)替换到明轮装置中的Cu〜(2+)达到21%,成功地将Zn〜(2+)掺入Cu3(btc)2金属有机骨架(HKUST-1)中锌。通过〜1H和〜(13)C固态核磁共振(SSNMR)对所得双核Cu-Zn桨轮单元进行了详细的光谱表征。通过对NMR信号的强度分析,可以定量确定掺入Cu3(btc)2骨架的Zn〜(2+)含量。 X射线和EPR数据验证了分析。确定了不同样品的表面积,这些表面积表明孔隙率随锌含量的增加而降低。与锌原子配位的水分子即使在疏散后仍保留在结构中。还通过计算周围桨轮的所有未配对电子的伪接触或偶极位移贡献来确定它们的分配。

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