之字形的
网(多面体)
剪裁(形态学)
对角线的
拓扑(电路)
网络拓扑
传递关系
计算机科学
化学
数学
组合数学
几何学
哲学
语言学
操作系统
作者
Borja Ortín‐Rubio,Hosein Ghasempour,Vincent Guillerm,Ali Morsali,Judith Juanhuix,Inhar Imaz,Daniel Maspoch
摘要
Herein we propose a new approach for deducing the topology of metal–organic frameworks (MOFs) assembled from organic ligands of low symmetry, which we call net-clipping. It is based on the construction of nets by rational deconstruction of edge-transitive nets comprising higher-connected molecular building blocks (MBBs). We have applied net-clipping to predict the topologies of MOFs containing zigzag ligands. To this end, we derived 2-connected (2-c) zigzag ligands from 4-c square-like MBBs by first splitting the 4-c nodes into two 3-c nodes and then clipping their two diagonally connecting groups. We demonstrate that, when this approach is applied to the 17 edge-transitive nets containing square-like 4-c MBBs, net-clipping leads to generation of 10 nets with different underlying topologies. Moreover, we report that literature and experimental research corroborate successful implementation of our approach. As proof-of-concept, we employed net-clipping to form three new MOFs built with zigzag ligands, each of which exhibits the deduced topology.
科研通智能强力驱动
Strongly Powered by AbleSci AI