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低改性氧化锌含量下纳米复合材料的热分解行为及动力学

Thermal decomposition behavior and kinetics of nanocomposites at low-modified ZnO content.

作者信息

Wang Rui, Xie Congzhen, Zeng Leilei, Xu Huasong

机构信息

School of Electric Power, South China University of Technology Guangzhou 510641 China congzhen168.163.com.

出版信息

RSC Adv. 2019 Jan 7;9(2):790-800. doi: 10.1039/c8ra09206k. eCollection 2019 Jan 2.

Abstract

In this study, a titanate coupling agent (TCA) was used to modify the surface of nano ZnO. The thermal properties of room temperature vulcanized silicone rubber (RTV) nanocomposites with modified nano ZnO were compared at nano-filler weight fractions ranging from 0% to 2%. The results indicated that the titanate coupling agent was successfully grafted on the surface of nano ZnO. The size and shape of the nanoparticles were not changed after modification and all particles were about 36 nm. With increasing amounts of nanoparticles, the initial thermal decomposition temperature increased from 344.6 °C to 420 °C and reached maximum at 1.5% ZnO addition. The thermal decomposition process of RTV can be divided into three different stages. In the first stage, the temperatures at maximum decomposition rate ( ) for the five samples were similar. In the second and third stages, and increased 79.1 °C and 88.9 °C, respectively, upon addition of the modified nano ZnO. The thermal decomposition kinetics results showed that the activation energy ( ) of RTV was lower than that of 1% ZnO/RTV at the low thermal conversion rate (). The average values of the two samples were similar, at 144.29 kJ mol and 146.78 kJ mol, respectively. The kinetic energy index () of RTV was 3.84. Compared to pure RTV, 1% ZnO/RTV showed a more complex thermal decomposition process, as its value was 0.66 higher than that of RTV. Comparing and values, it was found that the nanocomposites were less likely to transform into an activated complex due to their higher potential energy barrier.

摘要

在本研究中,使用钛酸酯偶联剂(TCA)对纳米ZnO的表面进行改性。在纳米填料质量分数为0%至2%的范围内,对含有改性纳米ZnO的室温硫化硅橡胶(RTV)纳米复合材料的热性能进行了比较。结果表明,钛酸酯偶联剂成功接枝在纳米ZnO的表面。改性后纳米颗粒的尺寸和形状未发生变化,所有颗粒均约为36 nm。随着纳米颗粒用量的增加,初始热分解温度从344.6℃升高至420℃,并在添加1.5% ZnO时达到最大值。RTV的热分解过程可分为三个不同阶段。在第一阶段,五个样品的最大分解速率( )时的温度相似。在第二和第三阶段,添加改性纳米ZnO后, 和 分别升高了79.1℃和88.9℃。热分解动力学结果表明,在低热转化率( )下,RTV 的活化能( )低于1% ZnO/RTV 的活化能。两个样品的平均 值相似,分别为144.29 kJ/mol和146.78 kJ/mol。RTV的动力学能量指数( )为3.84。与纯RTV相比,1% ZnO/RTV表现出更复杂的热分解过程,因为其 值比RTV高0.66。比较 和 值发现,纳米复合材料由于其较高的势能垒而不太可能转化为活化络合物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f0aa/9059490/ee2f442d3e76/c8ra09206k-f1.jpg

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