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首页> 外文期刊>Materials Letters >Synthesis dielectric and mechanical properties of paddy straw derived graphene quantum dots-stone waste nanocomposite
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Synthesis dielectric and mechanical properties of paddy straw derived graphene quantum dots-stone waste nanocomposite

机译:稻草衍生石墨烯量子点 - 石渣纳米复合材料的合成介电和力学性能

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摘要

In present work, graphene quantum dots (GQDs) was synthesized from paddy straw using the cost effective hydrothermal method. High strength and moisture resistant GQDs reinforced stone waste particulates nanocomposites were prepared for the first time. Structural, morphological and functional group were analyzed using X-Ray diffraction, SEM and FT-IR techniques, respectively. Interestingly, GQDs-stone nanocomposites exhibited low dielectric constant (epsilon ' - 10) as compared to pristine stone composites (epsilon ' - 55). High flexural strength up to 60 MPa was achieved from GQDs reinforcement in stone waste nanocomposites. The high flexural strength and low dielectric constant from GQDs-stone waste polymer composite sheet were attributed due to high mechanical strength and sp2 hybridized covalent bond of GQDs and its high conductivity.
机译:在目前的工作中,使用成本有效的水热法从水稻秸秆中合成石墨烯量子点(GQDS)。 制备高强度和耐湿的GQDS增强石渣颗粒纳米复合材料首次制备。 使用X射线衍射,SEM和FT-IR技术分析结构,形态学和官能团。 有趣的是,与原始石复合材料相比,GQDS-石纳米复合材料表现出低介电常数(ε-10)(epsilon' - 55)。 高达60MPa的高弯曲强度是从石渣纳米复合材料中的GQDS增强液中实现的。 GQDS-石渣聚合物复合板的高弯曲强度和低介电常数由于GQD的高机械强度和SP2杂交的共价键及其高导电性。

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