首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Three-dimensional nitrogen and phosphorus co-doped carbon quantum dots/reduced graphene oxide composite aerogels with a hierarchical porous structure as superior electrode materials for supercapacitors
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Three-dimensional nitrogen and phosphorus co-doped carbon quantum dots/reduced graphene oxide composite aerogels with a hierarchical porous structure as superior electrode materials for supercapacitors

机译:具有分层多孔结构的三维氮和磷共掺杂碳量子点/还原氧化物复合气凝胶作为超级电容器的优质电极材料

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摘要

Carbon quantum dot (CQD)-based electrode materials as a novel kind of emerging materials have recently received increasing interest owing to their many unique properties. Herein, graphitic CQDs are synthesized by a modified chemical oxidation approach, and further utilized as the intercalator to prepare novel three-dimensional (3D) N, P co-doped CQDs/reduced graphene oxide (rGO) composite aerogels (N, P-CQDs/ rGO) by a one-step hydrothermal approach. When used as an electrode material for supercapacitors for the first time, the as-obtained N, P-CQDs/rGO exhibits a notably enhanced specific capacitance (453.7 F g(-1) at 1 A g(-1)) compared with GO, rGO, N, P-rGO and CQDs/rGO. Moreover, the as-synthesized N, PCQDs/rGO presents excellent rate properties (69.5% of capacitance retention at 50 A g(-1)) and cycle performance (93.5% of capacity retention at 10 A g(-1) over 10 000 cycles). The good capacitive behaviors can be ascribed to the synergistic effect of N, P co-doping modification, the introduction of CQDs and the unique 3D porous aerogel structure with a large specific surface area, hierarchical porous structure and superior electrical conductivity. In addition, a symmetrical device is assembled based on the N, PCQDs/rGO composite aerogel, achieving a high energy density of 15.69 W h kg(-1) at a power density of 325 W kg(-1), and superior cycle stability with 85.5% of capacitance retention at 5 A g(-1) over 10 000 cycles. This current work can offer a promising strategy for the design and development of novel and high-performance 3D CQD-based composite aerogels for application in supercapacitors and other energy storage systems.
机译:碳量子点(CQD)的电极材料最近由于其许多独特的性质而受到越来越多的兴趣。这里,石墨CQD通过改性化学氧化方法合成,并进一步用作嵌入剂以制备新颖的三维(3D)N,P掺杂CQDS /缩小的氧化烯(RGO)复合气凝胶(N,P-CQDS / rgo)通过一步的水热方法。当首次用作超级电容器的电极材料时,与GO相比,当获得的AS获得的N,P-CQDS / RGO表现出显着增强的特定电容(453.7f g(-1)) ,rgo,n,p-rgo和cqds / rgo。此外,AS合成的N,PCQDS / RGO具有优异的速率特性(50 A G(-1)的电容保留69.5%)和循环性能(93.5%的容量保持在10 A g(-1)超过10 000循环)。良好的电容性行为可以归因于N,P协同掺杂改性,CQD的引入和具有大的比表面积,分层多孔结构和优异的导电性的独特3D多孔气凝胶结构的协同效应。另外,基于N,PCQDS / RGO复合气凝胶组装了对称装置,以325W kg(-1)的功率密度,实现了15.69WH kg(-1)的高能量密度,以及优异的循环稳定性85.5%的电容保留超过10 000次循环。本行工作可以为新颖和高性能3D CQD基复合气凝胶的设计和开发提供有希望的策略,用于在超级电容器和其他能量存储系统中应用。

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