Advancing sustainable chemical technologies requires the development of multifunctional porous materials that combine catalytic activity and environmental remediation features. In this study, we report the synthesis of a porous organic polymer (POP) that can be used as both heterogeneous catalyst (for organic reactions) and a solid adsorbent (for iodine sequestration from various media). Specifically, the POP (OVS-Phos) is a hyper-cross-linked polymer (HCP) that was easily obtained using commercially available triphenylphosphine (TPP) and octavinylsilsesquioxane (OVS). For catalytic applications, we metalated the pristine OVS-Phos to yield Pd@OVS-Phos; the latter was tested as a heterogeneous catalyst for Suzuki–Miyaura cross-coupling reactions. Indeed, Pd@OVS-Phos could efficiently catalyze the formation of various biaryl compounds via Suzuki–Miyaura cross-coupling of substituted aryl boronic acids and aryl halides under benign conditions. These reactions were successful even with a low palladium loading of 1.13 mol %. Furthermore, the OVS-Phos could remarkably capture iodine from the vapor phase (up to 1.68 g/g) and from an aqueous medium (1.25 g/g). The OVS-Phos and Pd@OVS-Phos can be recycled for at least five cycles and used on a large-scale with negligible loss in activity.
Sharma et al. (Mon,) studied this question.
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