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Cellulose-Silica Nanocomposites of High Reinforcing Content with Fungi Decay Resistance by One-Pot Synthesis

机译:一锅法合成高抗真菌降解能力的纤维素-二氧化硅纳米复合材料

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摘要

Hybrid bionanocomposites based on cellulose matrix, with silica nanoparticles as reinforcers, were prepared by one-pot synthesis of cellulose surface modified by solvent exchange method to keep the biopolymer net void for hosting inorganic nanoparticles. Neither expensive inorganic-particle precursors nor crosslinker agents or catalysts were used for effective dispersion of reinforcer concentration up to 50 wt %. Scanning electron microscopy of the nanocomposites shows homogeneous dispersion of reinforcers in the surface modified cellulose matrix. The FTIR spectra demonstrated the cellulose features even at 50 weight percent content of silica nanoparticles. Such a high content of silica provides high thermal stability to composites, as seen by TGA-DSC. The fungi decay resistance to Trametes versicolor was measured by standard test showing good resistance even with no addition of antifungal agents. This one-pot synthesis of biobased hybrid materials represents an excellent way for industrial production of high performance materials, with a high content of inorganic nanoparticles, for a wide variety of applications.
机译:通过一锅合成通过溶剂交换法改性的纤维素表面以保持生物聚合物净空以容纳无机纳米粒子,制备了基于纤维素基质的杂化生物纳米复合材料,以二氧化硅纳米粒子为增强剂。既不使用昂贵的无机颗粒前体也不使用交联剂或催化剂来有效分散高达50重量%的增强剂浓度。纳米复合材料的扫描电子显微镜显示增强剂在表面改性的纤维素基质中的均匀分散。 FTIR光谱证明即使在二氧化硅纳米颗粒的50重量%含量下纤维素也具有特征。如TGA-DSC所见,如此高的二氧化硅含量为复合材料提供了高的热稳定性。通过标准试验测量对杂色曲霉的真菌衰减抗性,即使不添加抗真菌剂也显示出良好的抗性。这种一锅合成的生物基杂化材料代表了一种工业化生产高性能材料的绝妙方式,该材料具有高含量的无机纳米颗粒,可用于多种应用。

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