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Functional Nanostructured Oligochitosan–Silica/Carboxymethyl Cellulose Hybrid Materials: Synthesis and Investigation of Their Antifungal Abilities

机译:功能纳米结构的寡聚壳聚糖-二氧化硅/羧甲基纤维素杂化材料:合成及其抗真菌能力的研究

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摘要

Functional hybrid materials were successfully synthesized from low-cost waste products, such as oligochitosan (OCS) obtained from chitosan (one of the main components in crab shells) and nanosilica (nSiO2) obtained from rice husk, in a 1:1 ratio (w/w), and their dispersion in the presence of carboxymethyl cellulose at pH 7 was stable for over one month without aggregation. The molecular weights, chemical structures, morphologies, and crystallinities of the obtained materials were characterized by GPC, FTIR, TEM, and XRD, respectively. The antifungal effects of OCS, nSiO2, and the OCSSiO2 hybrid materials were investigated via a disk-diffusion method. The results showed that the nanohybrid materials had better resistance to Phytophthora infestans fungus than the individual components, and a concentration of the OCS2SiO2 hybrid material of 800 mg L−1 was the lowest concentration where the material completely inhibited Phytophthora infestans growth, as measured via an agar dilution method. This study not only creates a novel environmentally friendly material with unique synergistic effects that can replace current toxic agrochemicals but also can be considered a new platform for further research in green agricultural applications.
机译:从低成本的废品中成功合成了功能杂化材料,例如从壳聚糖获得的寡聚壳聚糖(OCS)(蟹壳的主要成分之一)和从稻壳获得的纳米二氧化硅(nSiO2)的比例为1:1(w / w),并且它们在羧甲基纤维素存在下在pH 7下的分散稳定了一个月以上而没有聚集。所得材料的分子量,化学结构,形态和结晶度分别通过GPC,FTIR,TEM和XRD表征。通过圆盘扩散法研究了OCS,nSiO2和OCS / nSiO2杂化材料的抗真菌作用。结果表明,纳米杂种材料对疫霉菌的抵抗力强于单个组分,OCS2 / nSiO2杂化材料的浓度为800 mg L -1 是材料完全降解的最低浓度。如通过琼脂稀释法所测定的,其抑制了疫霉疫霉的生长。这项研究不仅创造了一种具有独特增效作用的新型环保材料,可以替代目前的有毒农药,而且可以认为是绿色农业应用进一步研究的新平台。

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