首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Cu-Free 1,3-Dipolar Cycloaddition Click Reactions To Form Isoxazole Linkers in Chelating Ligands for fac-[M~I(CO)_3]~+ Centers (M = Re, ~(99)mTc)
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Cu-Free 1,3-Dipolar Cycloaddition Click Reactions To Form Isoxazole Linkers in Chelating Ligands for fac-[M~I(CO)_3]~+ Centers (M = Re, ~(99)mTc)

机译:在fac- [M〜I(CO)_3]〜+中心的螯合配体中形成无铜1,3-偶极环加成点击反应以形成异恶唑连接基(M = Re,〜(99)mTc)

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摘要

Isoxazole ring formation was examined as a potential Cu-free alternative click reaction to Cu~I-catalyzed alkyne/azide cycloaddition. The isoxazole reaction was explored at macroscopic and radiotracer concentrations with the fac-[M~I(CO)_3]~+ (M = Re, ~(99)mTc) core for use as a noncoordinating linker strategy between covalently linked molecules. Two click assembly methods (click, then chelate and chelate, then click) were examined to determine the feasibility of isoxazole ring formation with either alkynefunctionalized tridentate chelates or their respective fac-[M~I(CO)_3]~+ complexes with a model nitrile oxide generator. Macroscale experiments, alkyne-functionalized chelates, or Re complexes indicate facile formation of the isoxazole ring. ~(99)mTc experiments demonstrate efficient radiolabeling with click, then chelate; however, the chelate, then click approach led to faster product formation, but lower yields compared to the Re analogues.
机译:异恶唑环的形成被认为是对Cu〜I催化的炔烃/叠氮化物环加成反应的潜在无铜替代点击反应。使用fac- [M〜I(CO)_3]〜+(M = Re,〜(99)mTc)核心在宏观和放射性示踪剂浓度下探索异恶唑反应,用作共价连接分子之间的非配位接头策略。检查了两种单击组装方法(单击,然后螯合和螯合,然后单击),以确定用炔官能化的三齿螯合物或它们各自的带有模型的fac- [M〜I(CO)_3]〜+配合物形成异恶唑环的可行性一氧化氮发生器。大规模实验,炔烃官能化的螯合物或Re络合物表明异恶唑环易于形成。 〜(99)mTc实验表明,单击并进行螯合可以有效地进行放射性标记;然而,与Re类似物相比,螯合然后点击的方法导致更快的产品形成,但产率更低。

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