线性氯化磷腈酸催化剂合成功能化PDMS流体

IF 2.8 3区 材料科学 Q3 CHEMISTRY, PHYSICAL Silicon Pub Date : 2024-11-14 DOI:10.1007/s12633-024-03182-7
Chen Jin, Yang Zhang, Hao Yang, Hong Dong, Yanjiang Song, Zhirong Qu, Chuan Wu
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引用次数: 0

摘要

为克服氯化磷腈碱不能制备低粘度聚硅氧烷,特别是不能制备含Si-H键的低粘度聚硅氧烷流体的不足,以PCl5和NH4Cl为原料制备了线性氯化磷腈酸,并通过缩合反应和平衡聚合反应研究了其在线性聚硅氧烷制备中的应用。考察了催化剂用量、反应时间、钝化剂类型(MgO、NaHCO3、Fe2O3、MnO2、CaO、ZnO)及其用量对PDMS低聚物结构和产率的影响。采用NMR、GPC、折光计和TGA等方法对聚PDMS低聚物的结构和性能进行了表征。与商用PDMS流体相比,以ZnO为钝化剂制备的PDMS流体具有更好的热性能。当采用低聚合度的端羟基直线型PDMS时,加入5 ppm的催化剂和NaHCO3作为钝化剂,通过缩合反应得到α, ω-双三甲基硅氧基端线性PDMS,收率为91.1%。以八甲基环四硅氧烷为单体,催化剂用量为1000ppm,三乙胺为钝化剂,可制得多种功能化pmms,收率为73.7% ~ 80.4%。与平衡聚合反应相比,羟基缩合反应制备的PDMS分子量分布更窄。这项工作为低粘度聚硅氧烷的合成提供了一条新的途径,特别是末端带有活性官能团的聚硅氧烷。图形抽象
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Synthesis of Functionalized PDMS Fluids by Linear Chlorinated Phosphazene Acid Catalyst

In order to overcome the deficiency that chlorinated phosphazene base cannot prepare low-viscosity polysiloxanes, especially low-viscosity polysiloxane fluids containing Si–H bonds, linear chlorinated phosphazene acid was prepared using PCl5 and NH4Cl, and its application in the preparation of linear polysiloxanes by condensation reaction and equilibrium polymerization reaction was studied. The effects of the dosage of the catalyst, reaction time, passivator type (MgO, NaHCO3, Fe2O3, MnO2, CaO, ZnO), and its dosage on the structure and yield of the PDMS oligomers were investigated. NMR, GPC, refractometer, and TGA were used to test the structure and properties of the PDMS oligomer. Compared with commercial PDMS fluid, the PDMS fluid prepared with ZnO as a passivator has better thermal properties. When hydroxyl-terminated linear PDMS with low polymerization degree is used, with the addition of 5 ppm of catalyst and NaHCO3 as a passivator, α, ω-bistrimethylsiloxy-terminated linear PDMS was obtained by means of the condensation reaction with a yield of 91.1%. Using octamethylcyclotetrasiloxane as the monomer, with the addition of 1000 ppm of catalyst and triethylamine as a passivator, various functionalized PDMSs were obtained with yields ranging from 73.7% to 80.4%. Compared with the equilibrium polymerization reaction, the molecular weight distribution of the PDMS prepared by the hydroxyl condensation reaction is narrower. This work provides a new approach to the synthesis of low-viscosity polysiloxanes, especially those terminated with active functional groups.

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来源期刊
Silicon
Silicon CHEMISTRY, PHYSICAL-MATERIALS SCIENCE, MULTIDISCIPLINARY
CiteScore
5.90
自引率
20.60%
发文量
685
审稿时长
>12 weeks
期刊介绍: The journal Silicon is intended to serve all those involved in studying the role of silicon as an enabling element in materials science. There are no restrictions on disciplinary boundaries provided the focus is on silicon-based materials or adds significantly to the understanding of such materials. Accordingly, such contributions are welcome in the areas of inorganic and organic chemistry, physics, biology, engineering, nanoscience, environmental science, electronics and optoelectronics, and modeling and theory. Relevant silicon-based materials include, but are not limited to, semiconductors, polymers, composites, ceramics, glasses, coatings, resins, composites, small molecules, and thin films.
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