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ExBox:多环芳烃清除剂。

ExBox: a polycyclic aromatic hydrocarbon scavenger.

机构信息

Department of Chemistry, Northwestern University, 2145 Sheridan Road, Evanston, Illinois 60208, United States.

出版信息

J Am Chem Soc. 2013 Jan 9;135(1):183-92. doi: 10.1021/ja307360n. Epub 2012 Oct 8.

Abstract

A template-directed protocol, which capitalizes on donor-acceptor interactions, is employed to synthesize a semi-rigid cyclophane (ExBox(4+)) that adopts a box-like geometry and is comprised of π-electron-poor 1,4-phenylene-bridged ("extended") bipyridinium units (ExBIPY(2+)). ExBox(4+) functions as a high-affinity scavenger of an array of different polycyclic aromatic hydrocarbons (PAHs), ranging from two to seven fused rings, as a result of its large, accommodating cavity (approximately 3.5 Å in width and 11.2 Å in length when considering the van der Waals radii) and its ability to form strong non-covalent bonding interactions with π-electron-rich PAHs in either organic or aqueous media. In all, 11 PAH guests were observed to form inclusion complexes with ExBox(4+), with coronene being the largest included guest. Single-crystal X-ray diffraction data for the 11 inclusion complexes ExBox(4+)⊂PAH as well as UV/vis spectroscopic data for 10 of the complexes provide evidence of the promiscuity of ExBox(4+) for the various PAHs. Nuclear magnetic resonance spectroscopy and isothermal titration calorimetric analyses of 10 of the inclusion complexes are employed to further characterize the host-guest interactions in solution and determine the degree with which ExBox(4+) binds each PAH compound. As a proof-of-concept, a batch of crude oil from Saudi Arabia was subjected to extraction with the water-soluble form of the PAH receptor, ExBox·4Cl, resulting in the isolation of different aromatic compounds after ExBox·4Cl was regenerated.

摘要

采用模板导向的方法,利用供体-受体相互作用,合成了一种半刚性的环芳烷(ExBox(4+)),它采用盒状几何形状,由π-电子缺的 1,4-亚苯基桥接(“扩展”)双吡啶鎓单元(ExBIPY(2+))组成。ExBox(4+)作为一种高亲和力的多环芳烃(PAHs)清除剂,可以与多种不同的 PAHs 形成包合物,这些 PAHs 的环数从两个到七个不等,这是由于其具有较大的容纳空腔(考虑到范德华半径时,宽度约为 3.5 Å,长度约为 11.2 Å),并且能够在有机或水介质中与富π电子的 PAHs 形成强非共价键相互作用。总共观察到 11 种 PAH 客体与 ExBox(4+)形成包合物,其中冠烯是最大的包含客体。11 个包含复合物 ExBox(4+)⊂PAH 的单晶 X 射线衍射数据以及 10 个复合物的紫外/可见光谱数据提供了 ExBox(4+)对各种 PAHs 具有混杂性的证据。对 10 个包含复合物的核磁共振波谱和等温滴定量热分析用于进一步在溶液中表征主体-客体相互作用,并确定 ExBox(4+)与每个 PAH 化合物结合的程度。作为概念验证,对来自沙特阿拉伯的一批原油进行了水溶性 PAH 受体 ExBox·4Cl 的萃取,在 ExBox·4Cl 再生后,分离出不同的芳香化合物。

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