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一种新型有前景的聚(偶氮甲碱)有机半导体材料的合成、表征及性能研究

Synthesis, Characterization, and Investigation of the Properties of a New Promising Poly(Azomethine) Organic Semiconductor Material.

作者信息

Ismaili Jihane, Zerrouki Chouki, Fourati Najla, Leroy-Lhez Stephanie, Montplaisir Daniel, Villandier Nicolas, Zerrouki Rachida

机构信息

LABCiS, Faculté des Sciences et Techniques, Université de Limoges, 123 Avenue Albert Thomas, 87060 Limoges, France.

Département de Biochimie, Chimie, Physique et Science Forensique, Université du Québec à Trois-Rivières, Trois-Rivières, QC G9A 5H7, Canada.

出版信息

Materials (Basel). 2025 Apr 4;18(7):1658. doi: 10.3390/ma18071658.

Abstract

A new poly(azomethine) with improved solubility was successfully prepared by the polycondensation of terephthalaldehyde and 2,2-Bis[4-(4-aminophenoxy)phenyl]-hexafluoropropane (4-BDAF) under green chemistry conditions. This new polymer containing hexafluoroisopropylidene was compared with a polymer containing isopropylidenediphenyl to study the influence of the presence of fluorine atoms on the properties of the polymer. Both were characterized by nuclear magnetic resonance (NMR), their molecular weight was measured by gel permeation chromatography (GPC), and their morphology was studied by X-ray diffraction (XRD). The two polymers obtained were soluble in most polar aprotic solvents and even in less polar solvents, which are practical and easily accessible solvents. Their thermal properties were determined by a thermogravimetric analysis (TGA) and differential scanning calorimetry (DSC). These two new polymers showed high resistance to thermal decomposition up to 490 °C, with a glass transition temperature (Tg) of 180 °C. The photophysical properties were studied by UV/Visible absorption. The polymers were doped and then deposited on cellulose filaments, an approach that made it possible to produce self-supporting conductive composites thanks to their mechanical properties. The topography of the resulting materials was characterized at submicron scales before estimating their electronic conductivity and gap energy by diffuse reflection spectroscopy.

摘要

在绿色化学条件下,通过对苯二甲醛与2,2-双[4-(4-氨基苯氧基)苯基]-六氟丙烷(4-BDAF)的缩聚反应,成功制备了一种溶解性得到改善的新型聚(偶氮甲碱)。将这种含六氟异亚丙基的新型聚合物与一种含异丙叉二苯的聚合物进行比较,以研究氟原子的存在对聚合物性能的影响。两者均通过核磁共振(NMR)进行表征,其分子量通过凝胶渗透色谱法(GPC)测定,其形态通过X射线衍射(XRD)研究。所得到的两种聚合物可溶于大多数极性非质子溶剂,甚至可溶于极性较小的溶剂,这些都是实用且易于获得的溶剂。它们的热性能通过热重分析(TGA)和差示扫描量热法(DSC)测定。这两种新型聚合物在高达490℃时表现出高的热分解抗性,玻璃化转变温度(Tg)为180℃。通过紫外/可见吸收研究光物理性能。将聚合物进行掺杂,然后沉积在纤维素长丝上,由于其机械性能,这种方法使得制备自支撑导电复合材料成为可能。在通过漫反射光谱法估计其电导率和能隙之前,在亚微米尺度上对所得材料的形貌进行了表征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ba34/11990484/532b95a4b80b/materials-18-01658-sch001.jpg

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