Chandrasekhar Pujari, Savitha Govardhan, Moorthy Jarugu Narasimha
Department of Chemistry, Indian Institute of Technology, Kanpur, 208016, India.
Chemistry. 2017 May 29;23(30):7297-7305. doi: 10.1002/chem.201700139. Epub 2017 May 8.
The self-assembly of a rigid and trigonal prismatic triptycene-hexaacid H THA with Co(NO ) or Mn(NO ) leads to isostructural metal-organic frameworks (MOFs) that are sustained by 6-connecting metal cluster [M (μ -O)(COO) ] secondary building units (SBUs). The Co- and Mn-MOFs, constructed from organic and metal-cluster building blocks that are both trigonal prismatic, correspond to the heretofore unknown "tsg" topology. Due to the rigidity and concave attributes of H THA, the networks in the Co- and Mn-MOFs are highly porous and undergo 3-fold interpenetration. The interpenetration imparts permanent microporosity and high thermal stability to the MOFs to permit postsynthetic metal exchange (PSME) and gas sorption. The PSME occurs in a single crystal to single crystal fashion when the crystals of Co- or Mn-MOFs are immersed in a solution of Cu(NO ) in MeOH/H O. Further, the isostructural robust MOFs exhibit significant gas sorption and remarkable selectivity for CO over N (ca. 100 fold) at ambient conditions. In fact, the postsynthetically-engineered Cu-THA exhibits better CO sorption than Co-THA and Mn-THA. A composite of effects that include pore dimensions (ca. 0.7 nm), unsaturated metal centers, and basic environments conferred by the quinoxaline nitrogen atoms appears to be responsible for the observed high CO capture and selectivity. The high symmetry and structural attributes of the organic linker seemingly dictate adoption of the trigonal-prismatic metal cluster SBU by the metal ions in the MOFs.
刚性三棱柱状三蝶烯六酸H₆THA与Co(NO₃)₂或Mn(NO₃)₂自组装形成同构金属有机框架(MOF),这些框架由六连接金属簇[M₃(μ₃ -O)(COO)₆]二级建筑单元(SBU)支撑。由均为三棱柱状的有机和金属簇建筑块构建的Co-MOF和Mn-MOF对应于迄今未知的“tsg”拓扑结构。由于H₆THA的刚性和凹面属性,Co-MOF和Mn-MOF中的网络具有高度多孔性,并发生三重互穿。互穿赋予MOF永久微孔性和高热稳定性,以允许进行后合成金属交换(PSME)和气体吸附。当Co-MOF或Mn-MOF的晶体浸入MeOH/H₂O中的Cu(NO₃)₂溶液中时,PSME以单晶到单晶的方式发生。此外,同构的坚固MOF在环境条件下表现出显著的气体吸附以及对CO₂相对于N₂的显著选择性(约100倍)。实际上,后合成工程化的Cu-THA比Co-THA和Mn-THA表现出更好的CO₂吸附性能。包括孔尺寸(约0.7 nm)、不饱和金属中心以及喹喔啉氮原子赋予的碱性环境在内的多种效应的综合作用似乎是观察到的高CO₂捕获量和选择性的原因。有机连接体的高对称性和结构属性似乎决定了MOF中的金属离子采用三棱柱状金属簇SBU。