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Guest Encapsulation within Surface-Adsorbed Self-Assembled Cages

机译:客观封装在表面吸附的自组装笼内

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摘要

Coordination cages encapsulate a wide variety of guests in the solution state. This ability renders them useful for applications such as catalysis and the sequestration of precious materials. A simple and general method for the immobilization of coordination cages on alumina is reported. Cage loadings are quantified via adsorption isotherms and guest displacement assays demonstrate that the adsorbed cages retain the ability to encapsulate and separate guest and non-guest molecules. Finally, a system of two cages, adsorbed on to different regions of alumina, stabilizes and separates a pair of Diels-Alder reagents. The addition of a single competitive guest results in the controlled release of the reagents, thus triggering their reaction. This method of coordination cage immobilization on solid phases is envisaged to be applicable to the extensive library of reported cages, enabling new applications based upon selective solid-phase molecular encapsulation.
机译:协调笼子封装了解决方案状态的各种客人。这种能力使它们对催化和贵重材料的隔离等应用有用。报道了一种简单且通用的氧化铝协调笼的方法。笼式负载量通过吸附等温线量化,而且客户位移测定表明吸附的笼子保留了封装和单独的客人和非客体分子的能力。最后,将两个笼子的系统吸附在氧化铝的不同区域,稳定并分离一对Diels-Alder试剂。添加一种单一的竞争客房导致试剂的控释,从而引发它们的反应。这种协调笼的方法预防固相对固相的固定化以适用于报告的笼子的广泛文库,基于选择性固相分子包封来实现新的应用。

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