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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Dirhodium paddlewheel with functionalized carboxylate bridges: New building block for self-assembly and immobilization on solid support
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Dirhodium paddlewheel with functionalized carboxylate bridges: New building block for self-assembly and immobilization on solid support

机译:带有功能性羧酸盐桥的Dirhodium桨轮:用于自我组装和固定在固体支持物上的新构件

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摘要

A new dirhodium(II,II) paddlewheel complex, [Rh _2(O _2CC _6H _4COOC _2H _5) _4] (1), has been synthesized using a predesigned functionalized carboxylate, namely, 4-(ethoxycarbonyl)benzoate. The target product has been crystallized from the acetone solution and structurally characterized as a bis-acetone adduct, [Rh _2(O _2CC _6H _4COOC _2H _5) _4(OCMe _2) _2]?C _6H _(14) (2). By utilizing the ability of dangling ester groups to coordinate to open axial ends of neighboring dirhodium units, 1 can self-assemble to form 2D networks upon crystallization from solutions of noncoordinating solvents such as chlorobenzene and chloroform. The resulting [Rh _2(O _2CC _6H _4COOC _2H _5) _4]?2C _6H _5Cl (3) and [Rh _2(O _2CC _6H _4COOC _2H _5) _4]?2CHCl _3 (4) products have microporous solid state structures with the pores filled with the corresponding disordered solvent molecules. Notably, 3 and 4 represent unique examples of 2D extended frameworks based on dirhodium tetracarboxylate paddlewheel units devoid of any exogenous ligands. In solution, the dangling ends of carboxylate bridges of 1 have been successfully utilized for condensation reaction with the selected solid support, benzylamine-functionalized polystyrene, allowing successful heterogenization of dirhodium units through the equatorial covalent attachment to the substrate. The resulting solid product was tested as a catalyst in the cyclopropanation reaction of styrene with methyl phenyldiazoacetate to show good yields and diastereoselectivity.
机译:使用预先设计的功能化羧酸酯,即4-(乙氧基羰基)苯甲酸酯合成了一种新的(II,II)桨轮络合物[Rh _2(O _2CC _6H _4COOC _2H _5)_4](1)。目标产物已从丙酮溶液中结晶出来,并在结构上表征为双丙酮加合物[Rh _2(O _2CC _6H _4COOC _2H _5)_4(OCMe _2)_2] C _6H _(14)(2)。通过利用悬挂的酯基团协调相邻的dirhodium单元的轴向末端开端的能力,当从非配位溶剂(如氯苯和氯仿)溶液中结晶时,1可以自组装形成2D网络。生成的[Rh _2(O _2CC _6H _4COOC _2H _5)_4]?2C _6H _5Cl(3)和[Rh _2(O _2CC _6H _4COOC _2H _5)_4]?2CHCl _3(4)产品具有微孔固态结构孔中充满了相应的无序溶剂分子。值得注意的是,3和4代表了基于四羧酸二氢吡啶鎓叶轮单元的2D扩展骨架的独特实例,该骨架没有任何外源性配体。在溶液中,1的羧酸酯桥的悬空末端已成功用于与所选的固体载体苄胺官能化的聚苯乙烯的缩合反应,从而允许通过赤道共价附着于底物成功地使单元发生异质化。在苯乙烯与苯基重氮乙酸甲酯的环丙烷化反应中测试所得固体产物作为催化剂,以显示出良好的产率和非对映选择性。

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