Sitarz M, Jastrzębski W, Jeleń P, Długoń E, Gawęda M
AGH University of Science and Technology, Faculty of Materials Science and Ceramics, Al. Mickiewicza 30, 30-059 Kraków, Poland.
AGH University of Science and Technology, Faculty of Materials Science and Ceramics, Al. Mickiewicza 30, 30-059 Kraków, Poland.
Spectrochim Acta A Mol Biomol Spectrosc. 2014 Nov 11;132:884-8. doi: 10.1016/j.saa.2014.05.028. Epub 2014 May 29.
Black glasses are very interesting and promising materials from the point of their thermal and mechanical resistance. They can be used as protective layers on different kind of substrates, like steel, titanium, glasses. Controlling amount of carbon introduced to its structure is crucial for the properties of the material. Samples were prepared by sol-gel method using ladder-like silsesquioxanes as precursor and were heat-treated at 800°C in inert atmosphere. Middle infrared, EDX and MAS NMR studies were carried out on heated samples to determine their structure. All methods confirmed presence of Si-C bonds in the resulting material. Theoretical MIR spectrum, of the constructed black glass model, allowed to make a precise assignment of bands in the experimental spectrum.
从热阻和机械抗性的角度来看,黑色玻璃是非常有趣且有前景的材料。它们可以用作不同类型基材(如钢、钛、玻璃)上的保护层。控制引入其结构中的碳含量对材料的性能至关重要。样品通过溶胶 - 凝胶法制备,使用梯状倍半硅氧烷作为前驱体,并在惰性气氛中于800°C进行热处理。对加热后的样品进行了中红外、能谱分析(EDX)和魔角旋转核磁共振(MAS NMR)研究以确定其结构。所有方法均证实了所得材料中存在Si - C键。构建的黑色玻璃模型的理论中红外光谱能够对实验光谱中的谱带进行精确归属。