Thermal Behavior of Novel Aromatic Oligoesters and Oligoesteramides

T. Deberdeev, A. Akhmetshina, L. K. Karimova, S. V. Grishin, D. V. Kochemasova
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Abstract

Liquid crystalline polymers, depending on their structure and macromolecular architecture, are found in a number of commercial applications, ranging from state-of-the-art engineering plastics to soft matter artificial muscles and microrobots. Rigid chain liquid crystalline polymers are known as indispensable materials for high technology industries. However, their relatively high costs provoke the search for novel cost-effective mesogenic monomers. In this regard, a series of aromatic oligoesters and oligoesteramides were synthesized via high-temperature polycondensation of aromatic dicarboxylic acids with 4-hydroxybenzoic acid (or 4-aminobenzoic acid) and 1,5-naphthalene diol. The structure of the synthesized compounds was identified using FTIR spectra analysis. According to polarizing microscopy observations, novel oligoester based on 4-hydroxybenzoic acid, 1,5-naptalene diol and terephthalic acid demonstrated liquid crystallinity with nemat-ic texture, whereas other samples occurred in amorphous state in case of oligoester or in crystalline state in case of oligoesteramides. A relatively wide range of mesophase existence from 120 to 290 °C was found for the thermotropic oligoester using differential scanning calorimetry. While aromatic oligoesters at the begin-ning of the degradation processes were highly stable towards heat with comparable values of Т10, which were equal to 372–378 °C, aromatic oligoesteramides started to decompose at the temperatures lower by more than 50 °C than those for oligoesters.
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新型芳香低聚酯和低聚酯酰胺的热行为
液晶聚合物,根据其结构和大分子结构,被发现在许多商业应用中,从最先进的工程塑料到软物质人造肌肉和微型机器人。硬链液晶聚合物是高技术产业不可缺少的材料。然而,它们相对较高的成本促使人们寻找新的具有成本效益的介生单体。为此,以芳香族二羧酸为原料,与4-羟基苯甲酸(或4-氨基苯甲酸)和1,5-萘二醇进行高温缩聚,合成了一系列芳香族低聚酯和低聚酯酰胺。用FTIR光谱分析鉴定了合成化合物的结构。通过偏光显微镜观察,新型的4-羟基苯甲酸、1,5-萘二醇和对苯二甲酸低聚酯具有向列结构的液晶性,而其他样品的低聚酯呈无定形或低聚酯酰胺呈结晶态。差示扫描量热法发现热致性低聚酯在120 ~ 290℃范围内存在较宽的中间相。虽然芳香低聚酯在降解过程开始时对热非常稳定,其值Т10相当于372-378°C,但芳香低聚酯在比低聚酯低50°C以上的温度下开始分解。
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