Asymmetric urea, thiourea and squaramide receptors as minimal-anion binding motifs

IF 2.1 4区 化学 Q3 CHEMISTRY, MULTIDISCIPLINARY
Bobbie M. McVey, Joanna Rumble, Charis E. V. Nathan, Ian A. Gass, Mark R. Sambrook, Peter J. Cragg
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引用次数: 0

Abstract

Asymmetric minimal receptors based on 4-nitrophenylurea, 1, and 4-nitrophenylthiourea, 2, were shown to bind a range of anions and are deprotonated by both fluoride and hydroxide to give a colorime...
作为最小阴离子结合基团的不对称脲、硫脲和方酰胺受体
基于 4-硝基苯脲(1)和 4-硝基苯硫脲(2)的不对称最小受体被证明能与一系列阴离子结合,并能被氟化物和氢氧化物去质子化,从而产生褪色...
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来源期刊
Supramolecular Chemistry
Supramolecular Chemistry 化学-化学综合
CiteScore
3.60
自引率
3.00%
发文量
5
审稿时长
2.7 months
期刊介绍: Supramolecular Chemistry welcomes manuscripts from the fields and sub-disciplines related to supramolecular chemistry and non-covalent interactions. From host-guest chemistry, self-assembly and systems chemistry, through materials chemistry and biochemical systems, we interpret supramolecular chemistry in the broadest possible sense. Interdisciplinary manuscripts are particularly encouraged. Manuscript types include: high priority communications; full papers; reviews, and; Methods papers, techniques tutorials highlighting procedures and technologies that are important to the field. We aim to publish papers in a timely fashion and as soon as a paper has been accepted and typeset it will be published in electronic form on the Latest articles section of the website. The two most important review criteria are that the paper presents high-quality work that fits generally into the broad spectrum of activities in the supramolecular chemistry field. Under normal circumstances, Supramolecular Chemistry does not consider manuscripts that would be more suitable in a highly specialized journal. This includes, but is not limited to, those based mostly or exclusively on topics such as solid state/X-ray structures, computational chemistry, or electrochemistry. . The two most important review criteria are that the paper presents high-quality work that fits generally into the broad spectrum of activities in the supramolecular chemistry field.
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