Chemical design of onion-like carbon-silicon diimide polymer composites

Kaili Wang, Gabriela Mera
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Abstract

Abstract Herein, we report the synthesis and characterization of a novel class of polymer composites based on onion-like carbons (OLCs)-silicon diimide by a salt-free polycondensation reaction. The pyridine-catalyzed polymerization reaction was carried out in the presence of various contents (0.1, 0.5, 1, and 2 wt%) of carboxyl-functionalized OLCs in argon atmosphere to provide composites with well-dispersed and covalently incorporated 0D nanocarbons throughout the 3D matrix of silicon diimide polymer. A strong dependency of the optical properties (UV absorbance and the photoluminescence spectra) on the content of functionalized OLCs incorporated within the polymer matrix was observed. The novel polymer composites are suitable precursors for the design of advanced and multifunctional 0D-nanocarbon–containing Si3N4-based ceramic nanocomposites.
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类洋葱碳硅二亚胺聚合物复合材料的化学设计
摘要本文报道了一种新型的基于类洋葱碳(OLCs)-二亚胺硅的聚合物复合材料的合成和表征。在氩气气氛中,在不同含量(0.1、0.5、1和2 wt%)的羧基功能化有机碳的存在下,进行了吡啶催化的聚合反应,在硅二亚胺聚合物的三维基体中提供了分散和共价结合的0D纳米碳。光学性质(紫外吸光度和光致发光光谱)与聚合物基体中官能化聚合物的含量密切相关。这种新型聚合物复合材料是设计先进、多功能的含氮化硅纳米陶瓷复合材料的理想前驱体。
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