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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Tale of Alkyl Chains: Chain-Length Effect-Directed Formation of Complex Self-Assembly Behaviors at the Liquid/Solid Interface for Unsymmetrically Substituted Fluorenone Derivatives
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Tale of Alkyl Chains: Chain-Length Effect-Directed Formation of Complex Self-Assembly Behaviors at the Liquid/Solid Interface for Unsymmetrically Substituted Fluorenone Derivatives

机译:烷基链的故事:用于不对称取代的芴酮衍生物的液体/固体界面处的复杂自组装行为的链长效应形成

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Structural diversity induced by the chain-length effect in the field of two-dimensional self-assembly has gained immense attention because of its potential application in nanoscience and crystal engineering. By modifying the two side chains in a certain molecule by one carbon atom and gradually increasing the alkyl chain length, seven fluorenone derivatives (F-CnCn+1, n = 11-17) were synthesized. At the 1-octanoic acid/graphite interface, diverse nanostructures of hexamer-I, tetramer, dimer, alternate-I, hexamer-II, and alternate-II were recorded. The arrangement for the two side chains which differ from each other only by one carbon atom was discussed from the viewpoint of thermodynamics and kinetics. The alkyl chain in the same length was speculated to show selective identification during the self-assembly process, which was favored in consideration of dense packing and maximizing the molecular interplay. Three forces such as dipole-dipole, hydrogen bonding, and van der Waals (vdWs) interactions cooperatively or competitively exert their roles on stabilizing the assembled monolayers. For the purpose of further understanding the self-assembly mechanisms, we performed force field calculations, which revealed that the strength of the hydrogen bonds was related to the arrangement of the fluorenone units, whereas the vdWs interaction showed a close relationship with the alkyl chain length. This work displays an efficient method on fabricating complex self-assembly networks, and we believe that it will promote the study of the chain-length effect in supramolecular chemistry and interfacial science.
机译:由于其在纳米科和晶体工程中的潜在应用,由二维自组装领域的链长效应引起的结构多样性。通过通过一个碳原子改变一定分子中的两个侧链并逐渐增加烷基链长度,合成七种芴酮衍生物(F-CNCN + 1,N = 11-17)。在1-辛烷烯酸/石墨界面中,记录了六甲醚,四聚二聚物,二聚体,交替-1,六甲醚-II和交替-II的不同纳米结构。从热力学和动力学的观点来看,仅讨论了两个侧链的两个侧链的布置。推测相同长度的烷基链以显示在自组装过程中的选择性鉴定,这是考虑到致密包装和最大化分子相互作用的青睐。三个力,如偶极 - 偶极,氢键,氢粘合剂和范德瓦尔斯(VDWS)相互作用协作或竞争地发挥其作用,以稳定组装的单层。为了进一步理解自组装机制,我们进行了力场计算,显示氢键的强度与芴酮单元的布置有关,而VDWS相互作用显示与烷基链长度紧密关系。这项工作在制造复杂的自组装网络上显示了一种有效的方法,我们认为它将促进超分子化学和界面科学的链条长度效应的研究。

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