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Evaluation of structural, optical and physical properties of polyurethane composites doped with metal alkoxides

机译:用金属醇盐掺杂聚氨酯复合材料的结构,光学和物理性质的评价

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摘要

In this research, polyurethane (PU)/tetraethyl orthosilicate (TEOS) composite was prepared via one-step polymerization method using different concentrations of TEOS in PU. The structural, optical and physical properties of PU composite were characterized by SEM imaging, FT-IR spectroscopy, water uptake, Raman spectroscopy and optical microscopy imaging of synthesized samples. The SEM results showed that by adding TEOS to the PU, the cell and window size of synthesized samples decreased. This result was also observed in the optical micrographs. The bonding characteristics of PU/TEOS composites were analyzed using Raman and FT-IR spectra. According to the FT-IR spectra, the degree of phase separation (DPS) and hydrogen bonding index, R, in 800 μl TEOS/PU had the highest R and DPS factors. By adding different concentrations of TEOS to PU, the apparent density decreased but the real density increased. The total, open and closed porosity of the synthesized samples were calculated. At low loading of TEOS in PU, the open porosity of the samples increased. The PU/TEOS composites may be promising candidates for absorbing sound.
机译:在该研究中,通过使用不同浓度的PU中的TEOS通过单步聚合方法制备聚氨酯(PU)/四乙基异硅酸盐(TEOS)复合物。通过SEM成像,FT-IR光谱,水吸收,拉曼光谱和光学显微镜成像的特征在于PU复合材料的结构,光学和物理性质。 SEM结果表明,通过向PU添加TEOS,合成样品的细胞和窗口尺寸降低。在光学显微照片中也观察到该结果。使用拉曼和FT-IR光谱分析PU / TEOS复合材料的键合特性。根据FT-IR光谱,相分离程度(DPS)和氢键指数,R,800μLTEOS/ PU具有最高的R和DPS因子。通过向PU添加不同浓度的TEOS,表观密度降低,但实际密度增加。计算合成样品的总,打开和闭合孔隙率。在PU的低负荷下,样品的开放孔隙率增加。 PU / TEOS复合材料可能是吸收声音的承诺候选人。

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