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基于含席夫碱和酰胺连接单元的六臂环三磷腈核的新型液晶和阻燃分子的合成

Synthesis of novel liquid crystalline and fire retardant molecules based on six-armed cyclotriphosphazene core containing Schiff base and amide linking units.

作者信息

Jamain Zuhair, Khairuddean Melati, Guan-Seng Tay

机构信息

Faculty of Science and Natural Resources, Universiti Malaysia Sabah (UMS) 88400 Kota Kinabalu Sabah Malaysia

School of Chemical Sciences, Universiti Sains Malaysia (USM) 11800 Penang Malaysia

出版信息

RSC Adv. 2020 Aug 4;10(48):28918-28934. doi: 10.1039/d0ra03812a. eCollection 2020 Aug 3.

Abstract

Nucleophilic substitution reaction between 4-hydroxybenzaldehyde and hexachlorocyclotriphosphazene, HCCP formed hexakis(4-formlyphenoxy)cyclotriphosphazene, 1. Intermediates 2a-e was formed from the alkylation reaction of methyl 4-hydroxybenzoate with alkyl bromide which further reduced to form benzoic acid intermediates. Further reaction of 2a-e and other substituted benzoic acid formed 3a-h, which then reduced to give subsequent amines, 4a-h. Other similar reaction was used to synthesis 4i. Condensation reaction between 1 and 4a-i yielded hexasubstituted cyclotriphosphazene compounds, 5a-i having Schiff base and amide linking units, and these compounds consist of different terminal substituents such as heptyl, nonyl, decyl, dodecyl, tetradecyl, hydroxy, carboxy, chloro, and nitro groups, respectively. Compound 5j with amino substituent at terminal end was formed from the reduction of 5i. All the intermediates and compounds were characterized using Fourier Transform Infrared (FT-IR), Nuclear Magnetic Resonance (NMR) and CHN elemental analysis. Mesophase texture of these compounds were determined using Polarized Optical Microscope (POM) and their mesophase transition were further confirmed using Differential Scanning Calorimetry (DSC). Only compounds 5a-e with alkoxy chains exhibited smectic A phase while other intermediates (1, 2a-e, 3a-h, and 4a-i) and final compounds (5f-j) are found to be non-mesogenic with no liquid crystal behaviour. The confirmation of the identity of the SmA phase was determined using XRD analysis. The study on the structure-properties relationship was conducted in order to determine the effect of the terminal group, length of the chains and linking units to the mesophase behaviour of the compounds. Moreover, the fire retardant properties of these compounds were determined using Limiting Oxygen Index (LOI) testing. Polyester resin with LOI value of 22.53% was used as matrix for moulding in the study. The LOI value increased to 24.71% when this polyester resin incorporated with 1 wt% of HCCP. Generally, all the final compounds showed a positive results with LOI value above 27% and the highest LOI value was belonged to compound 5i with 28.53%. The high thermal stability of the Schiff base molecules and the electron withdrawing group of the amide bonds and nitro group enhanced the fire retardant properties of this compound.

摘要

4-羟基苯甲醛与六氯环三磷腈(HCCP)之间发生亲核取代反应,生成六(4-甲酰基苯氧基)环三磷腈(1)。4-羟基苯甲酸甲酯与烷基溴发生烷基化反应生成中间体2a - e,中间体2a - e进一步还原形成苯甲酸中间体。2a - e与其他取代苯甲酸进一步反应生成3a - h,然后还原得到相应的胺4a - h。采用其他类似反应合成了4i。1与4a - i之间的缩合反应生成了具有席夫碱和酰胺连接单元的六取代环三磷腈化合物5a - i,这些化合物分别含有不同的末端取代基,如庚基、壬基、癸基、十二烷基、十四烷基、羟基、羧基、氯基和硝基。末端带有氨基取代基的化合物5j由5i还原得到。所有中间体和化合物均通过傅里叶变换红外光谱(FT - IR)、核磁共振(NMR)和CHN元素分析进行表征。使用偏光显微镜(POM)测定这些化合物的中间相织构,并使用差示扫描量热法(DSC)进一步确认它们的中间相转变。只有带有烷氧基链的化合物5a - e呈现近晶A相,而其他中间体(1、2a - e、3a - h和4a - i)以及最终化合物(5f - j)被发现是非介晶的,没有液晶行为。通过XRD分析确定了近晶A相的特征。开展了结构 - 性能关系的研究,以确定末端基团、链长和连接单元对化合物中间相行为的影响。此外,使用极限氧指数(LOI)测试来测定这些化合物的阻燃性能。在该研究中,将极限氧指数值为22.53%的聚酯树脂用作模塑基体。当该聚酯树脂与1 wt%的HCCP混合时,极限氧指数值增加到24.71%。一般来说,所有最终化合物的极限氧指数值均高于27%,结果呈阳性,极限氧指数值最高的是化合物5i,为28.53%。席夫碱分子的高热稳定性以及酰胺键和硝基的吸电子基团增强了该化合物的阻燃性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cece/9055837/d9ef8037bdd5/d0ra03812a-s1.jpg

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