论文标题
通过改变掺杂序列的氮和硫双掺杂石墨烯的可调微波吸收性能
Tunable microwave absorption performance of nitrogen and sulfur dual-doped graphene by varying doping sequence
论文作者
论文摘要
硫和氮双掺杂石墨烯已在氧气还原反应,超级电容器和电池的领域进行了广泛研究,但尚未探索它们的磁性和吸收性能。此外,硫和氮原子的掺杂序列对双掺杂石墨烯的形态,结构特性以及相应的微波吸收性能的影响仍未得到探索。在这项工作中,使用可控的两个步骤可容纳的热处理方法成功制备了具有不同掺杂序列的氮和硫双掺杂石墨烯。第一个掺杂过程在双掺杂石墨烯样品的形态,晶体大小,层间距离,掺杂程度以及最终磁性和微波吸收特性上发挥了决定性作用。同时,第二个掺杂步骤影响了掺杂位点,并进一步对最终掺杂石墨烯产生了修复或破坏作用。双掺杂的石墨烯样品表现出两个明显的吸收峰,强度由掺杂元素的顺序决定。这种具有控制掺杂顺序的氮和硫双掺杂石墨烯提供了一种策略,以了解石墨烯中的双重掺杂剂,并通过改变掺杂序列来了解具有可调吸收带的微波吸收材料。
Sulfur and nitrogen dual doped graphene have been extensively investigated in the field of oxygen reduction reaction, supercapacitors and batteries, but their magnetic and absorption performance have not been explored. Besides, the effects of doping sequence of sulfur and nitrogen atoms on the morphology, structural property and the corresponding microwave absorption performance of the dual doped graphene remain unexplored. In this work, nitrogen and sulfur dual doped graphene with different doping sequence were successfully prepared using a controllable two steps facile thermal treatment method. The first doping process played a decisive role on the morphology, crystal size, interlayer distance, doping degree and ultimately magnetic and microwave absorption properties of the dual doped graphene samples. Meanwhile, the second doping step affected the doping sites and further had a repairing or damaging effect on the final doped graphene. The dual doped graphene samples exhibited two pronounced absorption peaks which intensity was decided by the order of the doping elements. This nitrogen and sulfur dual doped graphene with controlled doping order provides a strategy for understanding of the interaction between nitrogen and sulfur as dual dopants in graphene and further acquiring microwave absorbing materials with tunable absorption bands by varying the doping sequence.