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Cooperative loading of multisite receptors with lanthanide containers: an approach for organized luminescent metallopolymers

机译:多点受体与镧系元素的协同​​加载:一种有组织的发光金属聚合物的方法

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摘要

Metal-containing (bio)organic polymers are materials of continuously increasing importance for applications in energy storage and conversion, drug delivery, shape-memory items, supported catalysts, organic conductors and smart photonic devices. The embodiment of luminescent components provides a revolution in lighting and signaling with the ever-increasing development of polymeric light-emitting devices. Despite the unique properties expected from the introduction of optically and magnetically active lanthanides into organic polymers, the deficient control of the metal loading currently limits their design to empirical and poorly reproducible materials. We show here that the synthetic efforts required for producing soluble multi-site host systems >Lk are largely overcome by the virtue of reversible thermodynamics for mastering the metal loading with the help of only two parameters: (1) the affinity of the luminescent lanthanide container for a single binding site and (2) the cooperative effect which modulates the successive fixation of metallic units to adjacent sites. When unsymmetrical perfluorobenzene-trifluoroacetylacetonate co-ligands (pbta) are selected for balancing the charge of the trivalent lanthanide cations, Ln3+, in six-coordinate [Ln(pbta)3] containers, the explored anti-cooperative complexation processes induce nearest-neighbor intermetallic interactions twice as large as thermal energy at room temperature (RT = 2.5 kJ mol–1). These values have no precedent when using standard symmetrical containers and they pave the way for programming metal alternation in luminescent lanthanidopolymers.
机译:含金属的(生物)有机聚合物是在能量存储和转换,药物输送,形状记忆物品,负载型催化剂,有机导体和智能光子设备中的应用,其重要性不断提高。随着聚合物发光器件的不断发展,发光组件的实施例在照明和信号传输方面掀起了一场革命。尽管将光学和磁性活性镧系元素引入有机聚合物中有望获得独特的性能,但对金属负载的控制不足目前将其设计局限于经验性和可重复性差的材料。我们在这里表明,通过可逆的热力学,仅借助两个参数就能掌握金属负载量,从而大大克服了生产可溶性多站点宿主系统> Lk 所需的综合努力。发光镧系元素容器对单个结合位点的亲和力和(2)协同作用调节金属单元到相邻位点的连续固定。当选择不对称的全氟苯-三氟乙酰丙酮酸酯共配体(pbta )来平衡三坐标镧系阳离子Ln 3 + 在六坐标[Ln(pbta )3]的容器中,探索的抗合作络合过程诱导的邻近金属间相互作用是室温下热能的两倍大(RT = 2.5 kJ mol –1 )。这些值在使用标准对称容器时没有先例,它们为在发光镧系元素聚合物中编程金属交替铺平了道路。

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