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定量且正交的 SuFEx 平台的形成与反应性。

Quantitative and Orthogonal Formation and Reactivity of SuFEx Platforms.

机构信息

Laboratory of Organic Chemistry, Wageningen University, Stippeneng 4, 6708 WE, Wageningen, The Netherlands.

Department of Chemistry and The Skaggs Institute for Chemical Biology, The Scripps Research Institute, 10550 North Torrey Pines Road, La Jolla, CA, 92037, USA.

出版信息

Chemistry. 2018 Jul 20;24(41):10550-10556. doi: 10.1002/chem.201802356. Epub 2018 Jun 27.

Abstract

The constraints of minute reactant amounts and the impossibility to remove any undesired surface-bound products during monolayer functionalization of a surface necessitate the selection of efficient, modular and orthogonal reactions that lead to quantitative conversions. Herein, we explore the character of sulfur-fluoride exchange (SuFEx) reactions on a surface, and explore the applicability for quantitative and orthogonal surface functionalization. To this end, we demonstrate the use of ethenesulfonyl fluoride (ESF) as an efficient SuFEx linker for creating "SuFEx-able" monolayer surfaces, enabling three distinct approaches to utilize SuFEx chemistry on a surface. The first approach relies on a di-SuFEx loading allowing dual functionalization with a nucleophile, while the two latter approaches focus on dual (CuAAC-SuFEx/SPOCQ-SuFEx) click platforms. The resultant strategies allow facile attachment of two different substrates sequentially on the same platform. Along the way we also demonstrate the Michael addition of ethenesulfonyl fluoride to be a quantitative surface-bound reaction, indicating significant promise in materials science for this reaction.

摘要

在表面的单层功能化中,由于反应物的微量限制以及无法去除任何不需要的表面结合产物,因此需要选择高效、模块化和正交的反应,以实现定量转化。在此,我们探索了表面上的硫-氟交换(SuFEx)反应的性质,并探索了其在定量和正交表面功能化中的适用性。为此,我们展示了乙磺酰氟(ESF)作为有效的 SuFEx 连接体在创建“可 SuFEx”单层表面中的用途,从而能够在表面上利用 SuFEx 化学的三种不同方法。第一种方法依赖于双 SuFEx 负载,允许与亲核试剂的双重功能化,而后两种方法则侧重于双(CuAAC-SuFEx/SPOCQ-SuFEx)点击平台。所得到的策略允许在同一平台上顺序连接两个不同的底物。在此过程中,我们还证明了乙磺酰氟的迈克尔加成是一种定量的表面结合反应,这表明该反应在材料科学中有很大的应用前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b755/6099289/e7da57ddf8cb/CHEM-24-10550-g005.jpg

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