Song Chengling, Jiao Jingjing, Lin Qiyi, Liu Huimin, He Yabing
College of Chemistry and Life Sciences, Zhejiang Normal University, Jinhua 321004, China.
Dalton Trans. 2016 Mar 21;45(11):4563-9. doi: 10.1039/c5dt04943a. Epub 2016 Feb 4.
Replacing the benzene spacer in the organic linker 5,5'-(benzene-1,4-diyl)diisophthalate with the nitrogen containing heterocyclic rings, namely, pyrazine, pyridazine, and pyrimidine results in three organic linkers, which were reacted with copper ions under solvothermal conditions to form three isostructural metal-organic frameworks (ZJNU-46, ZJNU-47 and ZJNU-48) exhibiting exceptionally high sorption capacities with regard to acetylene due to the simultaneous immobilization of open metal sites and Lewis basic nitrogen sites in the frameworks. At 1 atm and 295 K, the gravimetric C2H2 adsorption uptakes reach 187, 213 and 193 cm(3) (STP) g(-1) for these three compounds. The gravimetric C2H2 adsorption amount of ZJNU-47a is the second highest reported for MOF materials. Notably, despite their same porosities, and densities of open metal sites and uncoordinated nitrogen sites, distinctly different C2H2 adsorption capacities were observed for these three compounds, which we think are mainly associated with the difference in the relative position of nitrogen atoms leading to different binding affinities of the frameworks towards C2H2 guest molecules, and thus different C2H2 adsorptions. This work demonstrates that the rational arrangement of open nitrogen sites will favorably improve the C2H2 uptake and thus provides useful information for future design of porous MOFs with high acetylene storage capacities.
用含氮杂环(即吡嗪、哒嗪和嘧啶)取代有机连接体5,5'-(苯-1,4-二基)二间苯二甲酸酯中的苯间隔基,得到三种有机连接体,它们在溶剂热条件下与铜离子反应,形成三种同构金属有机框架(ZJNU-46、ZJNU-47和ZJNU-48),由于框架中同时固定了开放金属位点和路易斯碱性氮位点,这些框架对乙炔表现出极高的吸附容量。在1个大气压和295K下,这三种化合物的乙炔重量吸附量分别达到187、213和193 cm³(标准温度和压力)g⁻¹。ZJNU-47a的乙炔重量吸附量在已报道的金属有机框架材料中排名第二。值得注意的是,尽管这三种化合物具有相同的孔隙率、开放金属位点密度和未配位氮位点密度,但它们的乙炔吸附容量却明显不同,我们认为这主要与氮原子相对位置的差异有关,这种差异导致框架对乙炔客体分子的结合亲和力不同,从而导致不同的乙炔吸附量。这项工作表明,合理排列开放氮位点将有利于提高乙炔吸附量,从而为未来设计具有高乙炔存储容量的多孔金属有机框架提供有用信息。