Exploiting coordination geometry to tune the dimensions and processability of metallosupramolecular polymers

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Abstract

Achieving precise control over the morphology, dimensions and processability of functional materials is a key but challenging requirement for the fabrication of smart devices. To address this issue, we herein compare the self-assembly behavior of two new Pt(ii) complexes that differ in the molecular and coordination geometry through implementation of either a monodentate (pyridine) or bidentate (bipyridine) ligand. The molecular preorganization of the bipyridine-based complex enables effective self-assembly in solution involving Pt⋯Pt interactions, while preserving aggregate solubility. On the other hand, increased steric effects of the linear bispyridine-based complex hinder an effective preorganization leading to poorly solvated aggregates when a critical concentration is exceeded.

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Bäumer, N., Kartha, K. K., Buss, S., Palakkal, J. P., Strassert, C. A., & Fernández, G. (2021). Exploiting coordination geometry to tune the dimensions and processability of metallosupramolecular polymers. Organic Chemistry Frontiers, 8(15), 4138–4143. https://doi.org/10.1039/d1qo00644d

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