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通过后合成阳离子交换和计算分析增强 Cu(BTC) 金属有机骨架对气体的吸附。

Enhanced Gas Adsorption on Cu(BTC) Metal-Organic Framework by Post-Synthetic Cation Exchange and Computational Analysis.

机构信息

Department of Chemistry and Biochemistry, University of Texas at El Paso, El Paso, Texas 79968, United States.

出版信息

Langmuir. 2023 Jun 13;39(23):8091-8099. doi: 10.1021/acs.langmuir.3c00455. Epub 2023 Jun 2.

Abstract

Increased gas adsorption in a series of post-synthetically modified metal-organic frameworks (MOFs) of the type HKUST-1 was achieved by the partial cation exchange process. Manipulation of post-synthetic conditions demonstrates high tunability in the site substitution and gas adsorption properties during the dynamic equilibrium process. In this work, post-synthetic modification of Cu(BTC) is carried on by exposure to TM solutions (TM = Mn, Fe, Co, Ni) at different time intervals. The crystal structure, composition, and morphology were studied by powder X-ray diffraction, Fourier-transform infrared spectroscopy, inductively coupled plasma optical emission spectroscopy, and scanning electron microscopy. Structural analysis supports the retention of the crystal structure and partial substitution of the Cu metal nodes within the framework. A linear increase in the transmetalation process is observed with Fe and Co with a maximum percentage of 39 and 18%, respectively. Conversely, relatively low cation exchange is observed with Mn having a maximum percentage of 2.40% and Ni with only 2.02%. Gas adsorption measurements and surface area analysis were determined for each species. Interestingly, (Cu/Mn)(BTC) revealed the highest CO adsorption capacity of 5.47 mmol/g, compared to 3.08 mmol/g for Cu(BTC). The overall increased gas adsorption can be attributed to the formation of defects in the crystal structure during the cation exchange process. These results demonstrate the outstanding potential of post-synthetic ion exchange as a general approach to fine-tuning the physical properties of existing MOF architectures.

摘要

通过部分阳离子交换过程,在一系列后合成修饰的金属有机骨架(MOFs)中实现了气体吸附的增加,这些 MOFs 的类型为 HKUST-1。通过后合成条件的控制,可以在动态平衡过程中对取代位置和气体吸附性能进行高度调节。在这项工作中,通过将 Cu(BTC)暴露于 TM 溶液(TM = Mn、Fe、Co、Ni)中不同时间来进行后合成修饰。通过粉末 X 射线衍射、傅里叶变换红外光谱、电感耦合等离子体光学发射光谱和扫描电子显微镜研究了晶体结构、组成和形态。结构分析支持保留晶体结构和框架内 Cu 金属节点的部分取代。观察到在 Fe 和 Co 中的跨金属化过程呈线性增加,最大取代率分别为 39%和 18%。相比之下,Mn 的阳离子交换相对较低,最大取代率为 2.40%,Ni 仅为 2.02%。对每种物质都进行了气体吸附测量和表面积分析。有趣的是,(Cu/Mn)(BTC) 表现出最高的 CO 吸附容量为 5.47 mmol/g,而 Cu(BTC) 为 3.08 mmol/g。整体上气体吸附的增加可以归因于阳离子交换过程中晶体结构中形成的缺陷。这些结果表明,后合成离子交换作为一种微调现有 MOF 结构物理性质的通用方法具有巨大的潜力。

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