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Minimal Edge-Transitive Nets for the Design and Construction of Metal-Organic Frameworks

机译:用于金属有机框架设计和建造的最小边缘传递网

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摘要

Highly-connected and minimal edge-transitive nets (with one or two kinds of edge) can be regarded as ideal blueprints for the rational design and construction of metal-organic frameworks (MOFs). Here we report and affirm the prominence of highly-connected nets as suitable targets in reticular chemistry for the design and synthesis of MOFs. Of special interest are augmented highly-connected binodal edge-transitive nets embedding a unique and precise positioning and connectivity of the net vertex figures, regarded as net-coded building units (net-cBUs). Explicitly, a definite net-cBU encompasses precise geometrical information that codes uniquely and matchlessly a selected net, a compelling perquisite for the rational design of MOFs. Interestingly, the double six-membered ring (d6R) building unit offers great prospective to be deployed as a net-cBU for the deliberate reticulation of the sole two edge-transitive nets with a vertex figure as a d6R, namely the (4,12)-coordinated shp net (square and hexagonal prism) and the (6,12)-coordinated alb net (aluminium diboride, hexagonal prism and trigonal prism). Conceivably, we envisioned and proposed various MOF structures based on the derived shp and alb nets. Gaining access to the requisite net-cBUs is essential for the successful practice of reticular chemistry; correspondingly organic and organic chemistries were deployed to afford concomitant molecular building blocks (MBBs) with the looked-for shape and connectivity. Practically, the combination of the 12-connected (12-c) rare-earth (RE) polynuclear, points of extension matching the 12 vertices of the hexagonal prism (d6R) with a 4-connected tetracarboxylate ligand or a 6-connected hexacarboxylate ligand afforded the targeted shp-MOF or alb-MOF, respectively. Intuitively, a dodecacarboxylate ligand can be conceived and purported as a compatible 12-c MBB, plausibly affording the positioning of the carbon centers of the twelve carboxylate groups on the vertices of the desired hexagonal prism building unit, and combined with the complementary 4-c copper paddlewheel [Cu2(O2C−)4] cluster or 6-c metal trinuclear [M3O(O2C−)6] clusters/ zinc tetranulcear [Zn4O(O2C−)6] clusters to credibly afford the construction of new MOF structures with underlying topologies based on derived shp and alb nets.
机译:高度连接和最小的边缘传递网络(具有一种或两种类型的边缘)可以被视为合理设计和构造金属有机框架(MOF)的理想蓝图。在这里,我们报告并确认高连通网络作为网状化学中MOF设计和合成的合适靶标的突出地位。特别令人关注的是增强的高度连接的二面体边缘可传递网络,其中嵌入了网络顶点图形的独特且精确的定位和连通性,被视为网络编码建筑单元(net-cBU)。明确地,确定的网络cBU包含精确的几何信息,这些信息唯一且无可匹敌地编码选定的网络,这对于MOF的合理设计具有令人信服的优势。有趣的是,双六元环(d6R)构建单元提供了广阔的前景,可以部署为网状cBU,用于故意将唯一的两个边缘传递网(顶点图为d6R)网状化,即(4,12 )协调的shp网(正方形和六边形棱柱)和(6,12)协调的alb网(二硼化铝,六边形棱柱和三棱柱)。可以想象,我们基于派生的shp和alb网络设想并提出了各种MOF结构。获得网状cBU的必要条件对于成功实现网状化学至关重要。相应地部署了有机和有机化学物质,以提供具有所需形状和连通性的伴随分子构件(MBB)。实际上,将12个连接的(12-c)稀土(RE)多核与六边形棱柱(d6R)的12个顶点与4个连接的四羧酸酯配体或6个连接的六羧酸酯配体相结合的组合分别提供了目标shp-MOF或alb-MOF。直观上,十二羧酸配体可以被认为是兼容的12-c MBB,可以合理地将十二个羧酸基的碳中心定位在所需六角棱柱单元的顶点上,并与互补的4-c结合铜桨轮[Cu2(O2C−)4]簇或6-c金属三核[M3O(O2C−)6]簇/四核锌[Zn4O(O2C−)6]簇可可靠地提供具有潜在拓扑结构的新MOF结构的构造基于派生的shp和alb网。

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