Chemistry Department, University of Bari Aldo Moro, Via Orabona 4, 70125 Bari, Italy.
CNR-NANOTEC c/o Department of Chemistry, University of Bari Aldo Moro, Via Orabona 4, 70125 Bari, Italy.
Molecules. 2021 Sep 15;26(18):5592. doi: 10.3390/molecules26185592.
The aim of the present work is the synthesis and characterization of new perfluorinated monomers bearing, similarly to Nafion, acidic groups for proton transport for potential and future applications in proton exchange membrane (PEM) fuel cells. To this end, we focused our attention on the synthesis of various molecules with (i) sufficient volatility to be used in vacuum polymerization techniques (e.g., PECVD)), (ii) sulfonic, phosphonic, or carboxylic acid functionalities for proton transport capacity of the resulting membrane, (iii) both aliphatic and aromatic perfluorinated tags to diversify the membrane polarity with respect to Nafion, and (iv) a double bond to facilitate the polymerization under vacuum giving a preferential way for the chain growth of the polymer. A retrosynthetic approach persuaded us to attempt three main synthetic strategies: (a) organometallic Heck-type cross-coupling, (b) nucleophilic displacement, and (c) Wittig-Horner reaction (carbanion approach). Preliminary results on the plasma deposition of a polymeric film are also presented. The variation of plasma conditions allowed us to point out that the film prepared in the mildest settings (20 W) shows the maximum monomer retention in its structure. In this condition, plasma polymerization likely occurs mainly by rupture of the π bond in the monomer molecule.
本工作的目的是合成和表征新型含氟单体,这些单体类似于 Nafion,具有酸性基团,可用于质子传输,有望在质子交换膜 (PEM) 燃料电池中得到应用。为此,我们专注于合成各种具有以下特点的分子:(i) 足够的挥发性,可用于真空聚合技术(例如 PECVD);(ii) 磺酸基、膦酸基或羧酸基,以提高所得膜的质子传导能力;(iii) 既有脂肪族又有芳香族全氟取代基,以增加膜的极性,使其与 Nafion 多样化;(iv) 双键,便于在真空中聚合,为聚合物链的生长提供有利途径。反合成分析促使我们尝试了三种主要的合成策略:(a) 有机金属 Heck 型交叉偶联,(b) 亲核取代,和 (c) Wittig-Horner 反应(碳负离子法)。还介绍了等离子体沉积聚合膜的初步结果。等离子体条件的变化使我们能够指出,在最温和的条件(20 W)下制备的膜在其结构中保留了最大量的单体。在这种条件下,等离子体聚合可能主要通过单体分子中π键的断裂来发生。