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芴桥联二咔唑单体电沉积膜的全氟侧链及软模板法对其表面形貌及疏水性的影响。

Influence of Polyfluorinated Side Chains and Soft-Template Method on the Surface Morphologies and Hydrophobic Properties of Electrodeposited Films from Fluorene Bridged Dicarbazole Monomers.

机构信息

Instituto de Investigaciones en Tecnologías Energéticas y Materiales Avanzados, IITEMA-UNRC-CONICET) Departamento de Química, Universidad Nacional de Río Cuarto, Agencia Postal 3, X5804BYA, Río Cuarto, Argentina.

University of Medicine Tirana, Department of Pharmacy, Rruga e Dibrës Nr. 371, AL1005, Tiranë, Albania.

出版信息

Chemphyschem. 2023 Jan 17;24(2):e202200371. doi: 10.1002/cphc.202200371. Epub 2022 Oct 18.

Abstract

A clear case of relationship between the monomer molecular structure and the capability of tuning the morphology of electrodeposited gas bubbles template polymer thin films is shown. To this end, a series of fluorene-bridged dicarbazole derivatives containing either linear or terminally branched polyfluorinated side chains connected to the fluorene subunit were synthesized and their electrochemical properties were investigated. The new compounds underwent electrochemical polymerization over indium tin oxide electrodes to give hydrophobic films with nanostructural and morphological properties strongly dependent on the nature of the side chains. Gas bubbles templated electropolymerization was next achieved by the addition of tiny amounts of water to the monomer solutions, without using surfactants. Within the investigated set of molecules, the nanostructural properties of the soft-templated films obtained from monomers bearing linear side chains could be fine-tuned by adjusting electrochemical parameters, leading to superhydrophobic surfaces.

摘要

清楚地表明了单体分子结构与调控电沉积气泡模板聚合物薄膜形态能力之间的关系。为此,合成了一系列含有线性或末端支化多氟侧链连接到芴亚基的芴桥双咔唑衍生物,并研究了它们的电化学性能。新化合物在铟锡氧化物电极上进行电化学聚合,得到具有纳米结构和形态特性的疏水性薄膜,这些特性强烈依赖于侧链的性质。接下来,通过向单体溶液中加入少量水而无需使用表面活性剂来实现气泡模板的电聚合。在所研究的分子中,通过调节电化学参数,可以精细调节带有线性侧链的单体获得的软模板薄膜的纳米结构特性,从而得到超疏水表面。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8643/10091753/447ea53d8c01/CPHC-24-0-g006.jpg

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