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介孔硅与金属有机骨架的可控自组装合成分级结构杂化材料及其 CO2 吸附性能。

Synthesis of Hierarchically Structured Hybrid Materials by Controlled Self-Assembly of Metal-Organic Framework with Mesoporous Silica for CO Adsorption.

机构信息

State Key Laboratory of Materials-Oriented Chemical Engineering, College of Chemical Engineering, Jiangsu National Synergetic Innovation Center for Advanced Materials, Nanjing Tech University , Nanjing 210009, P. R. China.

Sinopec Yangzi Petrochemical Company Ltd. , Nanjing 210048, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2017 Jul 12;9(27):23060-23071. doi: 10.1021/acsami.7b08117. Epub 2017 Jun 29.

Abstract

The HKUST-1@SBA-15 composites with hierarchical pore structure were constructed by in situ self-assembly of metal-organic framework (MOF) with mesoporous silica. The structure directing role of SBA-15 had an obvious impact on the growth of MOF crystals, which in turn affected the morphologies and structural properties of the composites. The pristine HKUST-1 and the composites with different content of SBA-15 were characterized by XRD, N adsorption-desorption, SEM, TEM, FT-IR, TG, XPS, and CO-TPD techniques. It was found that the composites were assembled by oriented growth of MOF nanocrystals on the surfaces of SBA-15 matrix. The interactions between surface silanol groups and metal centers induced structural changes and resulted in the increases in surface areas as well as micropore volumes of hybrid materials. Besides, the additional constraints from SBA-15 also restrained the expansion of HKUST-1, contributing to their smaller crystal sizes in the composites. The adsorption isotherms of CO on the materials were measured and applied to calculate the isosteric heats of adsorption. The HS-1 composite exhibited an increase of 15.9% in CO uptake capacity compared with that of HKUST-1. Moreover, its higher isosteric heats of CO adsorption indicated the stronger interactions between the surfaces and CO molecules. The adsorption rate of the composite was also improved due to the introduction of mesopores. Ten cycles of CO adsorption-desorption experiments implied that the HS-1 had excellent reversibility of CO adsorption. This study was intended to provide the possibility of assembling new composites with tailored properties based on MOF and mesoporous silica to satisfy the requirements of various applications.

摘要

具有分级孔结构的 HKUST-1@SBA-15 复合材料是通过金属有机骨架(MOF)与介孔硅原位自组装构建的。SBA-15 的结构导向作用对 MOF 晶体的生长有明显的影响,进而影响复合材料的形貌和结构性能。用 XRD、N 吸附-脱附、SEM、TEM、FT-IR、TG、XPS 和 CO-TPD 技术对原始 HKUST-1 和不同 SBA-15 含量的复合材料进行了表征。结果发现,复合材料是由 MOF 纳米晶体在 SBA-15 基体表面定向生长组装而成。表面硅醇基团与金属中心的相互作用引起了结构的变化,导致了复合材料比表面积和微孔体积的增加。此外,SBA-15 的附加约束也限制了 HKUST-1 的膨胀,导致复合材料中晶体尺寸更小。对材料的 CO 吸附等温线进行了测量,并应用于计算等吸附热。与 HKUST-1 相比,HS-1 复合材料的 CO 吸附量增加了 15.9%。此外,其 CO 吸附的等吸附热较高,表明表面与 CO 分子之间的相互作用更强。由于介孔的引入,复合材料的吸附速率也得到了提高。十次 CO 吸附-脱附实验表明,HS-1 对 CO 吸附具有优异的可逆性。本研究旨在为组装基于 MOF 和介孔硅的具有定制性能的新型复合材料提供可能性,以满足各种应用的要求。

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