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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Functional tolerance in an isoreticular series of highly porous metal-organic frameworks
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Functional tolerance in an isoreticular series of highly porous metal-organic frameworks

机译:等孔网状高度多孔金属-有机骨架系列的功能公差

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A series of highly porous University of Michigan Crystalline Material (UMCM-1) type Zn-based metal-organic frameworks (MOFs) were synthesized from mono- and bi-functionalized benzenedicarboxylate (BDC) ligands. In total, 16 new functionalized UMCM-1 derivatives were obtained by a combination of pre- and postsynthetic functionalization. Through postsynthetic modification (PSM), amino-halo bifunctional MOFs were converted into amide-halo materials via solid-state acylation reactions. A series of bifunctional MOFs containing Cl, Br, and I groups revealed that PSM conversion is not affected by the size of the halide, only by the steric bulk of the reagent used in these solid-state organic transformations.
机译:从单官能化和双官能化的苯二羧酸酯(BDC)配体合成了一系列高度多孔的密歇根大学结晶材料(UMCM-1)型锌基金属有机骨架(MOF)。通过合成前和合成后的功能化,总共获得了16种新的功能化UMCM-1衍生物。通过后期合成修饰(PSM),氨基-卤代双功能MOF通过固态酰化反应转化为酰胺-卤代材料。一系列包含Cl,Br和I基团的双功能MOF显示,PSM转化不受卤化物大小的影响,仅受这些固态有机转化中所用试剂的空间体积的影响。

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