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'Click' to functionalise: synthesis, characterisation and enhancement of the physical properties of a series of exo- and endo-functionalised Pd2L4 nanocages

机译:单击以实现功能化:一系列外切和内切功能化的Pd2L4纳米笼的合成,表征和物理性质的增强

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The synthesis of self-assembled metallosupramolecular architectures has been of steadily growing interest in recent years due to their diverse applications. Appending additional functionality to the ligands of these architectures has been limited as this often involves incorporation of coordinating groups that can potentially disrupt formation of the desired structure. Herein we report the use of the facile, functional group tolerant and high yielding CuAAC 'click' reaction to attach a variety of functional moieties to a tripyridyl ligand system. Despite the presence of the potentially coordinating 1,2,3-triazole rings, self-assembly of quadruply-stranded dipalladium(II) cage architectures in the presence of Pd(II) ions was almost universally observed for the functionalised "click" ligands. The only system which did not assemble into the expected cage featured a 2-(1,2,3-triazol-4-yl)pyridine binding pocket which sequestered the Pd(ii) ions. Blocking this chelating pocket with an inert [Re(CO)_3Cl] moiety restored the ability of the ligand to self-assemble into the desired quadruply-stranded dipalladium(II) cage, generating a heterometallic cage architecture. All ligands and cage architectures have been characterised using ~1H, ~(13)C and DOSY NMR, IR, UV-Vis and emission spectroscopies, mass spectrometry and in some cases by X-ray crystallography. Whilst the parent cage system is devoid of useful physical properties and displays a limited range of solubility, the CuAAC methodology provides a facile method to enhance the cage's properties. A variety of fluorescent, redox active and biologically relevant species have been appended to the external surface of these cages. These groups enabled the generation of a series of aqueous soluble, fluorescent and electrochemically active Pd2L4 cages in a modular fashion.
机译:自组装的金属超分子体系结构的合成由于其多样化的应用而近年来受到了稳定增长的关注。将附加功能附加到这些结构的配体上已受到限制,因为这通常涉及引入可能潜在破坏所需结构形成的配位基团。在本文中,我们报道了使用容易的,具有官能团耐受性和高产率的CuAAC“点击”反应将各种功能部分连接到三吡啶基配体系统上。尽管存在潜在地配位的1,2,3-三唑环,但对于功能化的“咔嗒”配体,几乎普遍观察到在Pd(II)离子存在下四链二钯(II)笼结构的自组装。唯一未组装到预期笼中的系统具有2-(1,2,3-三唑-4-基)吡啶结合袋,该结合袋隔离了Pd(ii)离子。用惰性[Re(CO)_3Cl]部分封闭该螯合口袋,可恢复配体自组装成所需的四链二钯(II)笼的能力,从而生成异金属笼结构。使用〜1H,〜(13)C和DOSY NMR,IR,UV-Vis和发射光谱,质谱法以及在某些情况下通过X射线晶体学对所有配体和笼结构进行了表征。虽然母笼系统没有有用的物理性能,并且显示出有限的溶解度范围,但CuAAC方法提供了一种简便的方法来增强笼的性能。各种荧光,氧化还原活性和生物学相关的物种已被附加到这些笼子的外表面。这些基团能够以模块化的方式生成一系列水溶性,荧光和电化学活性的Pd2L4笼。

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