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富勒烯含量对聚氨酯树脂性能的影响:流变学与热特性研究

Influence of fullerene content on the properties of polyurethane resins: A study of rheology and thermal characteristics.

作者信息

Akhanova Nazym Ye, Negim El-Sayed, Yerlanuly Yerassyl, Batryshev Didar G, Eissa Mohamed M, Schur Dmitry Yu, Ramazanov Tlekkabul S, Al Azzam Khaldun M, Muratov Mukhit M, Gabdullin Maratbek T

机构信息

Kazakh-British Technical University, 59 Tole Bi St., 050000, Almaty, Kazakhstan.

National Nanotechnological Laboratory of Open Type (NNLOT), Al-Faraby Kazakh National University, 71, Al-Faraby Ave., 050040, Almaty, Kazakhstan.

出版信息

Heliyon. 2024 Jun 20;10(12):e33282. doi: 10.1016/j.heliyon.2024.e33282. eCollection 2024 Jun 30.

Abstract

The effect of different contents of fullerene on the properties of polyurethane resins (PUs), including rheology and thermal properties, was investigated. Polyurethane resins were prepared through polyaddition reactions using different isocyanate monomers such as isophorone diisocyanate (IPDI), methylene diphenyl diisocyanate (MDI), hexamethylene diisocyanate (HDI), and different polyols, such as poly(oxytetramethylene) glycol (PTMG), the triol trade name FA-703, and polypropylene glycols (PPG), at an NCO/OH ratio 0.94 and a temperature of 100 °C. IR spectroscopy was used to control the polymerization of PUs through the shifting of NCO peaks. The results showed that the rheology and thermal properties of the prepared PU resins depend on the type of isocyanates and fullerene used. Based on the type of isocyanates, the PU resin prepared by MDI has the highest viscosity and thermal stability compared to the other isocyanates investigated. On the other hand, the PU resins prepared by IPDI mixed with fullerene had the highest viscosity and thermal stability. However, the initial decomposition temperature ( onset) of the PUs decreased with the addition of fullerene without affecting the maximum decomposition temperature ( ) of the PU resin.

摘要

研究了不同含量的富勒烯对聚氨酯树脂(PUs)性能(包括流变学性能和热性能)的影响。通过加成聚合反应,使用不同的异氰酸酯单体,如异佛尔酮二异氰酸酯(IPDI)、二苯基甲烷二异氰酸酯(MDI)、六亚甲基二异氰酸酯(HDI),以及不同的多元醇,如聚四亚甲基醚二醇(PTMG)、商品名为FA - 703的三醇和聚丙二醇(PPG),在NCO/OH比为0.94且温度为100℃的条件下制备聚氨酯树脂。利用红外光谱通过NCO峰的位移来控制聚氨酯的聚合反应。结果表明,所制备的聚氨酯树脂的流变学性能和热性能取决于所用异氰酸酯和富勒烯的类型。基于异氰酸酯的类型,与所研究的其他异氰酸酯相比,由MDI制备的聚氨酯树脂具有最高的粘度和热稳定性。另一方面,由IPDI与富勒烯混合制备的聚氨酯树脂具有最高的粘度和热稳定性。然而,聚氨酯的初始分解温度(起始温度)随着富勒烯的加入而降低,但不影响聚氨酯树脂的最大分解温度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/91f2/11253536/a3e6ad592b78/ga1.jpg

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