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Ultrasound irradiation: A robust approach for direct functionalization of graphene oxide with thermal and antimicrobial aspects

机译:超声辐照:具有热和抗菌特性的氧化石墨烯直接功能化的可靠方法

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Sonochemical waves as mechanochemical energy was employed to exfoliate graphite oxide and functionalized graphene oxide (GrO), through a reaction of solvent and accountable for top-down and bottom-up approach respectively. The in situ formation of ester intermediate was inferred and a polymeric surface of GrO was further functionalized with 6-Aminoindazole (6-AIND) through sonochemical nucleophilic substitution reaction. As compared to conventional method the effect of ultrasound was verified for the direct functionalization of GrO. The conventional hazardous acylation step for functionalization of GrO was deleted in ultrasound assisted formation of f-(6-AIND) GrO nanocomposite, prepared by stereoselective exploitation of carboxyl groups at edges of GrO. The characterization has ascertained a covalent attachment of 6-AIND onto GrO surface with ATR-FTIR, XPS, SSNMR, TGA, DSC, XRD, AFM, RAMAN, EDX, SEM, BET and elemental analyzer. A weight loss in TGA depicts enhanced thermal stability of f-(6-AIND) GrO and a thermally sensitive behavior. The f-(6-AIND) GrO was studied for in vitro antimicrobial activity to ensure health and environmental safety. Antibacterial activity was identified against human pathogenic gram-positive (Staphylococcus aureus; ATCC 25923) and gram-negative bacteria (Escherichia coli; ATCC 25922). The antifungal activity was observed against Candida albicans (ATCC 10231).
机译:声化学波作为机械化学能被用于通过溶剂反应剥离氧化石墨和官能化氧化石墨烯(GrO),分别负责自上而下和自下而上的方法。推断酯中间体的原位形成,并且通过声化学亲核取代反应用6-氨基吲唑(6-AIND)进一步官能化GrO的聚合物表面。与常规方法相比,已验证了超声对GrO的直接功能化的影响。在超声辅助的f-(6-AIND)GrO纳米复合材料的超声辅助形成过程中,删除了用于GrO功能化的常规危险酰化步骤,该步骤是通过立体选择性利用GrO边缘的羧基制备的。该表征已通过ATR-FTIR,XPS,SSNMR,TGA,DSC,XRD,AFM,RAMAN,EDX,SEM,BET和元素分析仪确定了6-AIND在GrO表面上的共价连接。在TGA中的重量损失描绘了f-(6-AIND)GrO的增强的热稳定性和热敏性能。研究了f-(6-AIND)GrO的体外抗菌活性,以确保健康和环境安全。鉴定出对人病原性革兰氏阳性菌(金黄色葡萄球菌; ATCC 25923)和革兰氏阴性菌(大肠杆菌; ATCC 25922)的抗菌活性。观察到了对白色念珠菌的抗真菌活性(ATCC 10231)。

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