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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >High-Level Doping of Nitrogen, Phosphorus, and Sulfur into Activated Carbon Monoliths and Their Electrochemical Capacitances
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High-Level Doping of Nitrogen, Phosphorus, and Sulfur into Activated Carbon Monoliths and Their Electrochemical Capacitances

机译:氮,磷和硫向活性炭整料中的高剂量掺杂及其电化学电容

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摘要

The present report demonstrates a new technique for doping heteroatoms (nitrogen, phosphorus, and sulfur) into carbon materials via a versatile post-treatment. The heat-treatment of carbon materials with a reagent, which is stable at ambient temperatures and evolves reactive gases on heating, in a vacuum-closed tube allows the introduction of various heteroatom-containing functional groups into a carbon matrix. In addition, the sequential doping reactions give rise to dual- and triple-heteroatom-doped carbons. The pore properties of the precursor carbon materials are preserved through each heteroatom doping process, which indicates that independent tuning of heteroatom doping and nanostructural morphology can be achieved in various carbon materials. The electrochemical investigation on the undoped and doped carbon monolithic electrodes applied to supercapacitors provides insights into the effects of heteroatom doping on electrochemical capacitance.
机译:本报告演示了一种通过通用后处理将杂原子(氮,磷和硫)掺杂到碳材料中的新技术。在真空密闭管中,用试剂对碳材料进行热处理,该试剂在环境温度下稳定并在加热时放出反应性气体,可将各种含杂原子的官能团引入碳基质中。另外,顺序的掺杂反应产生了双和三杂原子掺杂的碳。前驱体碳材料的孔特性通过每个杂原子掺杂过程得以保留,这表明可以在各种碳材料中实现杂原子掺杂和纳米结构形态的独立调节。对应用于超级电容器的未掺杂和掺杂碳单片电极的电化学研究提供了对杂原子掺杂对电化学电容的影响的见解。

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