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N-Doped Mesoporous Carbons: From Synthesis to Applications as Metal-Free Reduction Catalysts and Energy Storage Materials

机译:氮掺杂介孔碳:从合成到无金属还原催化剂和储能材料的应用

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N-doped mesoporous carbons, NMCs, have attracted intensive attention recently and have shown potential applications in various scientific fields including catalysis and energy conversion/storage. Via modification with foreign N elements and construction of mesoporous structures for NMCs, their electronic and spin structure, as well as their porosity can be greatly tailored. And the resultant electron-donor property, surface wettability, conductivity, ion/molecular transfer and reactivity are changed accordingly. In this review, we will summarize the recent research progress of these metal-free NMCs, with an emphasis on their synthesis and performance, especially for their synthetic strategy and catalytic properties towards oxygen and nitro compound reductions, as well as their electrochemical properties as electrode materials for lithium-ion/sulfur batteries and supercapacitors. We hope for future developments, such as controlling doping methods more precisely, generating more active sites by N-doping, and finding wider applications of NMCs in other fields.
机译:N掺杂的中孔碳NMC最近引起了广泛的关注,并已显示出在各种科学领域的潜在应用,包括催化和能量转换/存储。通过外来N元素的修饰和NMC介孔结构的构建,可以极大地调整其电子结构和自旋结构以及其孔隙率。相应地改变了所得的电子给体性能,表面润湿性,导电性,离子/分子转移和反应性。在这篇综述中,我们将总结这些无金属NMC的最新研究进展,重点是它们的合成和性能,尤其是它们的合成策略和对氧和硝基化合物还原的催化性能,以及它们作为电极的电化学性能。锂离子/硫电池和超级电容器的材料。我们希望未来的发展,例如更精确地控制掺杂方法,通过N掺杂产生更多的活性位点以及在其他领域中发现NMC的广泛应用。

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