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Preparation of layered graphitic carbon nitride/montmorillonite nanohybrids for improving thermal stability of sodium alginate nanocomposites

机译:制备层状石墨氮化碳/蒙脱土纳米杂化物以提高藻酸钠复合材料的热稳定性

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Graphitic carbon nitride (g-C3N4)/montmorillonite (Na-MMT) nanohybrids were successfully fabricated by a facile mixing strategy and then introduced into a sodium alginate host to prepare nanocomposites with different loading levels using a casting technique. The introduction of 4.0 wt% nanohybrids led to the maximal improvement by ca. 149 degrees C in thermal stability. The improvement of the thermal stability was due to the reason that the mutual intercalation weakened the interlayered interaction of g-C3N4 nanosheets or Na-MMT sheets and enhanced the physical barrier effect that retarded the permeation of heat and the escape of volatile products. This work may provide an approach for exploiting g-C3N4 based materials.
机译:通过简便的混合策略成功地制备了石墨碳氮化物(g-C3N4)/蒙脱土(Na-MMT)纳米杂化体,然后将其引入海藻酸钠基质中,使用流延技术制备了具有不同负载量的纳米复合材料。引入4.0 wt%的纳米杂化物导致最大的改善。 149摄氏度的热稳定性。热稳定性的提高是由于相互插层削弱了g-C3N4纳米片或Na-MMT片的层间相互作用,并增强了物理屏障作用,从而阻碍了热的渗透和挥发性产物的逸出。这项工作可能提供一种开发基于g-C3N4的材料的方法。

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