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Organometallic single-chain polymer nanoparticles via intra-chain cross-linking with dinuclear μ-halo(diene)Rh(I) complexes

机译:有机金属单链聚合物纳米颗粒通过内链交联与二核μ-卤素(二烯)RH(I)复合物

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An approach towards the expansion of Rh(I)-containing single-chain polymer nanoparticles (SCNPs) using linear polymers and mu-halo(diene)Rh(I) dimers as cross-linkers in high dilution was explored. Initially, the effects of utilizing different anionic ligands, i.e., halides, together with various labile alkene ligands, such as ethylene, 1,5cyclooctadiene and 1,5-hexadiene, on the stability and activity of the resulting Rh(I) cross-linking complexes were examined. While the ethylene complexes for bromide and iodide bridges resulted too unstable and the 1,5cyclooctadiene ligand produced inert complexes, the 1,5-hexadiene ligands provided the proper equilibrium of stability and lability to achieve efficient polymer folding. Thus, a range of new organometallic nanoparticles could be obtained via a direct exchange between the 1,5-hexadiene labile ligands of the Rh(I) complexes, and the corresponding 1,5-hexadiene elements present in ROMP derived 1,5-polycyclooctadiene (PCOD) and 1,4-polybutadiene (PBD). Notably, SEC analysis of the single-chain nanoparticles both for PCOD and PBD revealed the expected decrease in the hydrodynamic radius (Rh) of the parent polymer, indicating that other anions can also be used as elements in the cross-linking moieties to form these organometallic nanoparticles. Moreover, all of the Rh-SCNPs displayed intrinsic semi-conductivities in the range of similar undoped organic conjugated polymers, expanding the possible uses of this methodology for many applications.
机译:探讨了使用线性聚合物和Mu-Halo(二烯)RH(I)二聚体作为高稀释剂的交联剂的单链聚合物纳米颗粒(SCNP)膨胀RH(I)甲基聚合物纳米颗粒(SCNP)的方法。最初,利用不同的阴离子配体,即卤化物与各种不稳定烯烃配体,例如乙烯,1,5cycloOcodieNe和1,5-六二烯的影响,对所得RH(i)交联的稳定性和活性检查复合物。虽然溴化物和碘化物桥的乙烯配合物导致过于不稳定,但是1,5cycloOcodieNe配体制备惰性配合物,所以1,5-六二烯配体提供了稳定性的适当平衡,以实现有效的聚合物折叠。因此,可以通过RH(I)复合物的1,5-六二烯不稳定配体之间的直接交换获得一系列新的有机金属纳米颗粒,以及在ROMP衍生的1,5-聚环辛二烯中存在的相应的1,5-己二烯元素(PCOD)和1,4-聚丁二烯(PBD)。值得注意的是,对PCOD和PBD的单链纳米颗粒的秒分析显示母体聚合物的流体动力半径(RH)的预期降低,表明其他阴离子也可以用作交联部分中的元素以形成这些有机金属纳米粒子。此外,所有RH-SCNP都显示在类似的未掺杂有机缀合聚合物的范围内的内在半导体,扩大了该方法的可能用途,适用于许多应用。

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