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首页> 外文期刊>ACS applied materials & interfaces >Understanding Time Dependence on Zinc Metal-Organic Framework Growth Using in Situ Liquid Secondary Ion Mass Spectrometry
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Understanding Time Dependence on Zinc Metal-Organic Framework Growth Using in Situ Liquid Secondary Ion Mass Spectrometry

机译:理解锌金属 - 有机骨架生长的时间依赖性使用原位液体二次离子质谱法

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摘要

The abundance of novel metal-organic framework (MOF) materials continues to increase as more applications are discovered for these highly porous, well-ordered crystalline structures. The simplicity of constituents allows for the design of new MOFs with virtue of functionality and pore topology toward target adsorbates. However, the fundamental understanding of how these frameworks evolve during nucleation and growth is mostly limited to speculation from simulation studies. In this effort, we utilize a unique vacuum compatible system for analysis at the liquid vacuum interface (SALVI) microfluidic interface to analyze the formation and evolution of the benchmark MOF-74 framework using time-of-flight secondary ion mass spectrometry (ToF-SIMS). Principal component analysis of the SIMS mass spectra, together with ex situ electron microscopy, powder X-ray diffractometry, and porosimetry, provides new insights into the structural growth, metal-oxide cluster formation, and aging process of Zn-MOF-74. Samples collected over a range of synthesis times and analyzed closely with in situ ToF-SIMS, transmission electron microscopy, and gas adsorption studies verify the developing pore structure during the aging process.
机译:对于这些高度多孔良好的晶体结构发现更多的应用,大量的新型金属有机框架(MOF)材料继续增加。成分的简单性允许在靶吸附物的功能和孔拓扑方面设计新的MOF。然而,对这些框架在成核和生长期间如何发展的基本理解大多限于仿真研究的猜测。在这项工作中,我们利用了独特的真空兼容系统来分析液体真空界面(SALVI)微流体界面,分析了使用飞行时间二次离子质谱法(TOF-SIMS)的基准MOF-74框架的形成和演化)。 SIMS质谱的主成分分析与EX原位电子显微镜,粉末X射线衍射测定法和孔隙率测定,为Zn-Mof-74的结构生长,金属氧化物簇形成和老化过程提供了新的洞察。在一系列合成时间上收集的样品并与原位TOF-SIMS,透射电子显微镜和气体吸附研究密切分析,验证老化过程中的发育孔隙结构。

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