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不同硅烷偶联剂接枝纳米SiO对聚二甲基硅氧烷热力学性质和疏水性的模拟

Simulation of the Thermodynamic Properties and Hydrophobicity of Polydimethylsiloxane Modified by Grafting Nano-SiO with Different Silane Coupling Agents.

作者信息

Xie Yuzhang, Dai Weiju, Yan Jingyi, Wang Zuhao, Tang Chao

机构信息

College of Engineering and Technology, Southwest University, Chongqing 400700, China.

Electric Power Research Institute of Yunnan Power Grid, Kunming 650214, China.

出版信息

Materials (Basel). 2025 May 16;18(10):2323. doi: 10.3390/ma18102323.

Abstract

Polydimethylsiloxane (PDMS) with good hydrophobicity and nano-SiO with excellent thermal stability and mechanical properties are used as a composite coating for cellulose insulating paper in oil-immersed transformers, which effectively reduces the moisture generated by the thermal aging process, thus prolonging each transformer's service life. This study employed molecular dynamics simulations to investigate the effects of surface-modified nano-SiO with different silane coupling agents (KH570 and KH151) on the thermodynamic properties and hydrophobicity of PDMS. Four groups of anhydrous models were constructed, namely, PDMS, P-SiO, P-570, and P-151, as well as four corresponding groups of water-containing models: PDMS/HO, P-SiO/HO, P-570/HO, and P-151/HO. The results demonstrate that incorporating silane-coupled nano-SiO into PDMS enhances mechanical properties, , , , diffusion coefficient, interaction energy, and hydrogen bond count, with KH570-grafted composites exhibiting optimal thermomechanical performance and hydrophobicity. At a temperature of 343 K, KH570 modification increased the bulk modulus and by 26.5% and 31.0%, respectively, while reducing the water molecular diffusion coefficient by 24.7% compared to that of unmodified PDMS/SiO composites. The extended KH570 chains occupy additional free volume, forming a larger steric hindrance layer, restricting molecular chain mobility, suppressing hydrogen bond formation, and establishing a low energy surface.

摘要

具有良好疏水性的聚二甲基硅氧烷(PDMS)和具有优异热稳定性及机械性能的纳米SiO用作油浸式变压器中纤维素绝缘纸的复合涂层,这有效减少了热老化过程中产生的水分,从而延长了每台变压器的使用寿命。本研究采用分子动力学模拟来研究用不同硅烷偶联剂(KH570和KH151)对纳米SiO进行表面改性对PDMS热力学性质和疏水性的影响。构建了四组无水模型,即PDMS、P-SiO、P-570和P-151,以及四组相应的含水模型:PDMS/HO、P-SiO/HO、P-570/HO和P-151/HO。结果表明,将硅烷偶联的纳米SiO掺入PDMS中可提高机械性能、扩散系数、相互作用能和氢键数量,其中KH570接枝的复合材料表现出最佳的热机械性能和疏水性。在343 K的温度下,与未改性的PDMS/SiO复合材料相比,KH570改性使体积模量和分别提高了26.5%和31.0%,同时使水分子扩散系数降低了24.7%。延长的KH570链占据了额外的自由体积,形成了更大的空间位阻层,限制了分子链的流动性,抑制了氢键的形成,并建立了低能量表面。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b5f6/12113118/472373fc5096/materials-18-02323-g001.jpg

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