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Understanding, Controlling and Programming Cooperativity in Self-Assembled Polynuclear Complexes in Solution

机译:溶液中自组装多核配合物的理解,控制和编程协同性

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Deviations from statistical binding, that is cooperativity, in self-assembled polynuclear complexes partly result from intermetallic interactions Delta E-M,E-M, whose magnitudes in solution depend on a balance between electrostatic repulsion and solvation energies. These two factors have been reconciled in a simple point-charge model, which suggests severe and counter-intuitive deviations from predictions based solely on the Coulomb law when considering the variation of Delta E-M,E-M with metallic charge and intermetallic separation in linear polynuclear helicates. To demonstrate this intriguing behaviour, the ten microscopic interactions that define the thermodynamic formation constants of some twenty-nine homometallic and lieterometallic polynuclear triple-stranded helicates obtained from the coordination of the segmental ligands L1-L11 with Zn2+ (a spherical d-block cation) and Lu3+ (a spherical 4f-block cation), have been extracted by using the site binding model. As predicted, but in contrast with the simplistic coulombic approach, the apparent intramolecular intermetallic interactions in solution are found to be i) more repulsive at long distance (Delta E-1-4(Lu,Lu) > Delta E-1-2(Lu,Lu)), ii) of larger magnitude when Zn2+ replaces Lu3+ (Delta E-1-2(Zn,Lu) > Delta E-1-2(Lu,Lu)) and iii) attractive between two triply charged cations held at some specific distance (Delta E-1-3(Lu,Lu) < 0). The consequences of these trends are discussed for the design of polynuclear complexes in solution.
机译:自组装多核络合物与统计键合即合作性的偏差部分是由于金属间相互作用Delta E-M,E-M引起的,其溶液的大小取决于静电排斥力与溶剂化能之间的平衡。这两个因素已在简单的点电荷模型中调和,当考虑线性多核螺旋体中带金属电荷和金属间分离的Delta E-M,E-M的变化时,表明仅基于库仑定律的预测存在严重且与直觉相反的偏差。为了证明这种有趣的行为,十个微观相互作用定义了部分配体L1-L11与Zn2 +(球形d-嵌段阳离子)的配位而获得的约29个同金属和同金属金属多核三链螺旋的热力学形成常数。使用位点结合模型提取了Lu3 +和Lu3 +(球形4f嵌段阳离子)。如所预测的,但与简单的库仑方法相反,发现溶液中的明显分子内金属间相互作用为:i)在长距离处具有较强的排斥力(Delta E-1-4(Lu,Lu)> Delta E-1-2( Lu,Lu)),ii)当Zn2 +取代Lu3 +时幅度更大(Delta E-1-2(Zn,Lu)> Delta E-1-2(Lu,Lu)),并且iii)在两个三电荷阳离子之间保持吸引力在某个特定距离处(Delta E-1-3(Lu,Lu)<0)。讨论了这些趋势对溶液中多核复合物设计的影响。

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