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首页> 外文期刊>RSC Advances >Selective removal of isoquinoline and quinoline from simulated fuel using 1,1 '-binaphthyl-2,2 '-diol (BINOL): crystal structure and evaluation of the adduct electronic properties
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Selective removal of isoquinoline and quinoline from simulated fuel using 1,1 '-binaphthyl-2,2 '-diol (BINOL): crystal structure and evaluation of the adduct electronic properties

机译:使用1,1'-Binaphthyl-2,2'-二醇(甲醇)从模拟燃料选择性除去异喹啉和喹啉:晶体结构和加合物电子特性的评价

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摘要

1,1'-Binaphthyl-2,2'-diol/quinoline (BINOL/QUN) and 1,1'-binaphthyl-2,2'-diol/isoquinoline (BINOL/ISOQUN) adducts were successfully synthesized. X-ray single crystals of BINOL/QUN and BINOL/ISOQUN were grown and analysed. The crystal packing of the molecules in both adducts confirmed that they are held in aggregates by strong hydrogen bonds (O2-H2 center dot center dot center dot O3), (O3-H3 center dot center dot center dot N1), (O2-H2 center dot center dot center dot O1), (O1-H1 center dot center dot center dot N1), (O2-H2 center dot center dot center dot O1) and weak hydrogen C-H center dot center dot center dot pi bonds. The patterns of the hydrogen bonding network as well as the conformation of BINOL contribute to the formation of the shape of the voids that entrap quinoline and isoquinoline. Molecular modelling which was employed to investigate the electronic properties of BINOL/QUN and BINOL/ISOQUN shows that the HOMO positions of the adducts are localized around the 1,1'-binaphthyl-2,2'-diol (BINOL), while the LUMO is positioned on isoquinoline and quinoline. Thermodynamic parameters obtained from isothermal titration calorimetry (ITC) revealed a stronger isoquinoline/BINOL interaction compared to quinoline/BINOL. 6-Vinyl-1,1'-binaphthyl-2,2'-diol was co-polymerized with styrene to form [DBN-co-STY]. Electrospun [DBN-co-STY] exhibited selectivity for quinoline and isoquinoline in a model simulated fuel presenting an adsorption capacity of 2.2 and 2.4 mg g(-1) respectively. The adsorption study showed a higher adsorption capacity for isoquinoline compared to quinoline. This may be attributed to the more favourable electronic properties (HOMO-LUMO properties) of isoquinoline. This concept demonstrates the possibility of extracting/separating isoquinoline and quinoline from fuel.
机译:1,1'-联萘-2,2'-二酚/喹啉(BINOL /群生)和1,1'-联萘-2,2'-二酚/异喹啉(BINOL / ISOQUN)加合物成功地合成。 BINOL / QUN和BINOL / ISOQUN的透视单晶生长和分析。晶体堆积在两种加合物的分子的证实,它们在聚集体通过强氢键(O2-H2中心点中心的点中心的点O3),(O3-H3中心点中心的点中心点N1),(O2-H2保持中心点中心的点中心O1点),(O1-H1中心点中心的点中心点N1),(O2-H2中心点中心的点中心的点O1)和弱氢CH中心点中心的点中心的点π键。氢键网络的模式以及BINOL的构象向空隙。坑害喹啉和异喹啉的形状的形成。将其用于研究的BINOL / QUN和BINOL / ISOQUN显示,该加合物的HOMO位置周围的1,1'-联萘-2,2'-二酚(BINOL)局部电子性质,而LUMO分子建模被定位在异喹啉和喹啉。相比喹啉/ BINOL从等温滴定量热法(ITC)获得的热力学参数揭示了较强的异喹啉/ BINOL相互作用。 6-乙烯基-1,1'-联萘-2,2'-二醇共聚合苯乙烯以形成[DBN - 共 - STY]。电[DBN - 共 - STY]在模型模拟燃料喹啉和异喹啉表现出选择性呈现2.2和2.4毫克g的吸附容量(-1)分别。吸附研究表明较高的吸附能力为异喹啉比喹啉。这可以归因于异喹啉的更有利的电特性(HOMO-LUMO属性)。这个概念证明提取/从燃料中分离异喹啉和喹啉的可能性。

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  • 来源
    《RSC Advances 》 |2016年第45期| 共15页
  • 作者单位

    Nelson Mandela Metropolitan Univ Dept Chem POB 77000 ZA-6031 Port Elizabeth South Africa;

    Nelson Mandela Metropolitan Univ Dept Chem POB 77000 ZA-6031 Port Elizabeth South Africa;

    Nelson Mandela Metropolitan Univ Dept Chem POB 77000 ZA-6031 Port Elizabeth South Africa;

    Nelson Mandela Metropolitan Univ Dept Chem POB 77000 ZA-6031 Port Elizabeth South Africa;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学 ;
  • 关键词

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