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Solvothermal synthesis of graphene oxide and its composites with poly(epsilon-caprolactone)

机译:氧化石墨烯及其Solvothermal合成复合材料与聚(epsilon-caprolactone)

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Graphene oxide (GO) was prepared by a solvothermal synthesis method using sodium and ethanol. A sequence of pyrolysis, washing and purification steps was developed for the total removal of all by-products. The first pyrolysis step is essential to obtain graphitic forms of carbon while a washing and a second pyrolysis step further improved the graphenic structures obtained via the reduction of OH/COOH and C-O groups and the attendant increase in CC bonding (sp(2) hybridization). Two purification processes were employed to remove sodium carbonate (by-product), i.e. vacuum filtration and centrifugation, but the latter produced a more stable GO product, typically with a few-layer (ca. 3 nm) stack and relatively long platelets (up to ca. 1.3 mu m). The functionality of this GO was demonstrated by preparing composites of it with poly(epsilon-caprolactone) (PCL). Some of the GO was arranged in flower-like domains dispersed in the PCL matrix. The crystalline content of PCL decreased on addition of GO, though the dynamic modulus of PCL increased and an electrical percolation at 0.5 vol% GO was obtained, manifest by a similar to 10(4) increase in electrical conductivity (in an overall increase of similar to 10(5) achieved at >1 vol%), more than sufficient for anti-static applications.
机译:石墨烯氧化物(去)是由solvothermal准备的用钠和乙醇合成方法。序列的热解、洗涤和净化步骤开发的全部切除副产品。基本获得石墨碳的形式在洗涤和第二次热解的一步进一步提高了graphenic结构获得通过减少哦/羧基和切断组和服务员CC增加键(sp(2)杂交)。用来删除碳酸钠(副产品),即真空过滤离心分离,但后者了稳定的产品,通常few-layer(ca。3海里)堆栈和血小板相对较长(ca。1.3μm)。它的功能去证明了制备复合材料保利(epsilon-caprolactone) (PCL)。被安排在如花似玉的域分散在PCL矩阵。内容的PCL减少添加,尽管PCL的动态模量增加,电渗流在0.5 %卷去,由一个类似于清单10(4)增加在导电性(在一个整体增加类似于10 (5)> 1%)卷,为防静电绰绰有余应用程序。

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