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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >The preparation and properties of carbon inverse opal papers using carbon fiber sheets as a framework
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The preparation and properties of carbon inverse opal papers using carbon fiber sheets as a framework

机译:以碳纤维片为骨架的碳反蛋白石纸的制备与性能

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摘要

Carbon inverse opal monoliths store energy, sense small molecules, and catalyse reactions, but can be limited by their rigid form because it prevents the mechanical flexure that would be needed to embed this material within devices that bend during use. We report a method that uses carbon fiber papers to impart partial mechanical flexibility and greater electronic conductivity to carbon inverse opals. Our approach deposits colloidal crystals between the fibers in carbon fiber paper and uses the colloidal crystal templates to form inverse opal carbon from phenolic resin. The resulting carbon inverse opal papers (CIOPs) comprise both three-dimensionally interconnected macropores and aperiodic meso- and micropores, the combination of which establishes hundreds of square meters of interfacial area per gram that can store and discharge electrochemical capacitance while planar, while flexed around radii of curvature as small as 5 mm, and after 150 reversible flexures. Carbon inverse opal papers offer at least 3 times greater electronic conductivity than reported carbon inverse opals because the network of carbon fibers doubly serves as pliable framework and conductive conduit.
机译:碳反蛋白石整体存储能量,感知小分子并催化反应,但由于其刚性形式而受到限制,因为它阻止了将这种材料嵌入在使用过程中弯曲的设备中所需的机械挠曲。我们报告了一种使用碳纤维纸赋予碳反蛋白石部分机械柔韧性和更大的电子传导性的方法。我们的方法在碳纤维纸中的纤维之间沉积胶体晶体,并使用胶体晶体模板从酚醛树脂形成反蛋白石碳。生成的碳反蛋白石纸(CIOP)包含三维互连的大孔和非周期性的中微孔,两者的结合可建立每克数百平方米的界面面积,该面积可存储和释放平面上的电化学电容,同时弯曲曲率半径小至5毫米,并经过150次可逆弯曲。碳反蛋白石纸的电导率至少是报道的碳反蛋白石的3倍,因为碳纤维的网络可双重用作柔软的框架和导电导管。

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