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Combination of Carbon Nitride and Carbon Nanotubes: Synergistic Catalysts for Energy Conversion

机译:氮化物和碳纳米管的组合:能量转换协同催化剂

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摘要

Due to their versatile features and environmental friendliness, functionalized carbon materials show great potential in practical applications, especially in energy conversion. Developing carbon composites with properties that can be modulated by simply changing the ratio of the original materials is an intriguing synthetic strategy. Here, we took cyanamide and multiwalled carbon nanotubes as precursors and introduced a facile method to fabricate a series of graphitic carbon nitride/carbon nanotubes (g-C3N4/CNTs) composites. These composites demonstrated different practical applications with different weight ratios of the components, that is, they showed synergistic effects in optoelectronic conversion when g-C3N4 was the main ingredient and in oxygen reduction reaction (ORR) when CNTs dominated the composites. Our experiments indicated that the high electrical conductivity of carbon nanotubes promoted the transmission of the charges in both cases.
机译:由于它们多功能的特征和环境友好,功能化碳材料在实际应用中表现出很大的潜力,特别是在能量转换中。 开发具有可以通过简单地改变原材料的比例来调节的性质的碳复合材料是一种有趣的合成策略。 在这里,我们用氰酰胺和多壁碳纳米管作为前体,并引入了制造一系列石墨氮化物/碳纳米管(G-C3N4 / CNT)复合材料的容易方法。 这些复合材料展示了具有不同重量比的不同实际应用,即当CNT为主成分和氧还原反应(ORR)时,它们在光电转化中表现出协同作用。 我们的实验表明,在两种情况下,碳纳米管的高电导率促进了电荷的传播。

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