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A Supramolecular Strategy toward an Efficient and Selective Capture of Platinum(Ⅱ) Complexes

机译:高效(选择性)捕获铂(Ⅱ)配合物的超分子策略

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Recovering heavy and precious metals from wastewater is both economically and environmentally attractive. However, a challenge still remains in how to realize the highly selective removal and recovery of a particular metal of interest, such as platinum. Here we experimentally demonstrate a two-dimensional (2D) supramolecular polymer that can serve as a host for the highly selective capture of anionic platinum(II) (Pt-II) species including its metal-organic complexes and water-soluble ions. This host polymer possesses a 2D honeycomb-like nanostructure noncovalently bridged by cationic alkynylplatinum(II) terpyridine dimers. Anionic Pt-II guests readily bind to the dimeric Pt-II building blocks of the internal cavities via electrostatic and specific Pt-II center dot center dot center dot Pt-II interactions. Such unique host-guest interactions have endowed thin membranes comprising highly oriented supramolecular polymers with a versatile ability to selectively recognize and adsorb anionic Pt-II species over other metal ions in water upon simple filtration.
机译:从废水中回收重金属和贵金属在经济和环境上都具有吸引力。但是,如何实现对特定目标金属(例如铂)的高选择性去除和回收仍然是一个挑战。在这里,我们通过实验证明了二维(2D)超分子聚合物,可作为宿主来选择性地捕获阴离子铂(II)(Pt-II)物种,包括其金属-有机配合物和水溶性离子。该主体聚合物具有由阳离子炔基铂(II)吡啶吡啶二聚体非共价桥接的二维蜂窝状纳米结构。阴离子Pt-II客体通过静电和特定的Pt-II中心点中心点中心点中心点Pt-II相互作用,很容易地结合到内腔的二聚Pt-II结构单元上。这种独特的宿主-客体相互作用赋予了包含高度取向的超分子聚合物的薄膜,该薄膜具有通过简单过滤选择性识别并吸附水中其他金属离子之上的阴离子Pt-II种类的通用能力。

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