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Facile, environmentally benign and scalable approach to produce pristine few layers graphene suitable for preparing biocompatible polymer nanocomposites

机译:适用于制备生物相容性聚合物纳米复合材料的容纳,环境良性和可扩展的方法,用于生产适合制备生物相容性聚合物纳米复合材料的原始少数层石墨烯

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The success of developing graphene based biomaterials depends on its ease of synthesis, use of environmentally benign methods and low toxicity of the chemicals involved as well as biocompatibility of the final products/devices. We report, herein, a simple, scalable and safe method to produce defect free few layers graphene using naturally available phenolics i.e. curcumin/tetrahydrocurcumin/quercetin, as solid-phase exfoliating agents with a productivity of ~45?g/batch (D/G?≤?0.54 and D/D′?≤?1.23). The production method can also be employed in liquid-phase using a ball mill (20?g/batch, D/G?≤?0.23 and D/D′?≤?1.12) and a sand grinder (10?g/batch, D/G?≤?0.11 and D/D~?≤?0.78). The combined effect of π-π interaction and charge transfer (from curcumin to graphene) is postulated to be the driving force for efficient exfoliation of graphite. The yielded graphene was mixed with the natural rubber (NR) latex to produce thin film nanocomposites, which show superior tensile strength with low modulus and no loss of % elongation at break. In-vitro and in-vivo investigations demonstrate that the prepared nanocomposite is biocompatible. This approach could be useful for the production of materials suitable in products (gloves/condoms/catheters), which come in contact with body parts/body fluids.
机译:开发石墨烯生物材料的成功取决于其易于合成,使用环境良性方法和涉及化学品的低毒性以及最终产品/装置的生物相容性。在此报道,在本文中,使用天然可用的酚醛蛋白,即姜黄素/四氢溶滤蛋白/槲皮素,作为姜黄素/四氢透明蛋白/槲皮素,作为姜黄素/四氢透明蛋白/槲皮素的简单,可扩展和安全的方法,作为具有〜45Ω·克/批次的生产率的固相去角质剂(D / G. ?≤≤≤0.54和D / D'?≤≤1.23)。制备方法也可以使用球磨机(20≤g/批次,d /g≤≤10.23和d / d'≤α1.12)和砂磨机(10?g /批次, d / g?≤≤0.11和d / d〜?≤≤0.78)。将π-π相互作用和电荷转移(从姜黄素到石墨烯)的组合效应假设为用于高效剥离石墨的驱动力。将产物的石墨烯与天然橡胶(NR)胶乳混合以产生薄膜纳米复合材料,其显示出具有低模量的卓越的拉伸强度,并且在断裂时不会损失%伸长率。体外和体内研究表明,制备的纳米复合材料是生物相容性的。这种方法可用于生产适用于产品(手套/避孕套/导管)的材料,该材料与身体部位/体液接触。

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