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2D Thin Nanoflakes Assembled on Mesoporous Carbon Nanorods for Enhancing Electrocatalysis and for Improving Asymmetric Supercapacitors
Shang, Pei ; Zhang, Jianan ; Tang, Wanyu ; Xu, Qun ; Guo, Shaojun
刊名ADVANCED FUNCTIONAL MATERIALS
2016
关键词HYDROGEN EVOLUTION REACTION HIERARCHICAL POROUS CARBON ULTRATHIN NANOSHEETS ION BATTERIES PERFORMANCE MNO2 ELECTRODES GRAPHENE FABRICATION COMPOSITES
DOI10.1002/adfm.201603504
英文摘要Carbon nanomaterials are of great interest as the advanced supports of electrochemical active materials to enhance their performances, however, little knowledge has been put into understanding whether the pores of carbon nanomaterials as supports can tune the performance of energy storage and conversion devices due to the lack of methods for making porous carbon nanomaterials. Herein, this study demonstrates the use of 1D ordered mesoporous carbon nanorods (OMCRs) with high surface area as a new class of supports for 2D ultrathin MoS2 and MnO2 nanoplates to create the interesting hierarchical nanohybrids (MoS2@OMCRs and MnO2@OMCRs), respectively. With the significant role of OMCRs in optimizing the electron and charge transportation, MoS2@ OMCRs exhibits remarkable activity for catalyzing hydrogen evolution reaction with a low onset overpotential of 105 mV and low Tafel slope of 40 mV dec(-1), much better than those of MoS2@carbon nanofibers. Significantly, the asymmetric supercapacitor based on MnO2@OMCRs as anode and OMCRS as cathode displays a maximum specific capacitance up to 100 F g(-1) at 0.2 A g(-1) and a high energy density of 55.2 W h kg(-1) at the power density of 200 W kg(-1) within a wide operating voltage of 2.0 V. The present work highlights the important role of the mesoporous carbon support in achieving the advanced energy storage and conversion.; National Natural Science Foundation of China [21571157, 21101141, 51173170]; Peking University; Young Thousand Talented Program, National Basic Research Program of China [2016YFB0100201]; Outstanding Young Talent Research Fund of Zhengzhou University [1521320001]; Open Project Foundation of Key Laboratory of Advanced Energy Materials Chemistry of Nankai University [2015-32]; SCI(E); ARTICLE; zjn@zzu.edu.cn; qunxu@zzu.edu.cn; guosj@pku.edu.cn; 43; 7766-7774; 26
语种英语
内容类型期刊论文
源URL[http://ir.pku.edu.cn/handle/20.500.11897/458436]  
专题工学院
推荐引用方式
GB/T 7714
Shang, Pei,Zhang, Jianan,Tang, Wanyu,et al. 2D Thin Nanoflakes Assembled on Mesoporous Carbon Nanorods for Enhancing Electrocatalysis and for Improving Asymmetric Supercapacitors[J]. ADVANCED FUNCTIONAL MATERIALS,2016.
APA Shang, Pei,Zhang, Jianan,Tang, Wanyu,Xu, Qun,&Guo, Shaojun.(2016).2D Thin Nanoflakes Assembled on Mesoporous Carbon Nanorods for Enhancing Electrocatalysis and for Improving Asymmetric Supercapacitors.ADVANCED FUNCTIONAL MATERIALS.
MLA Shang, Pei,et al."2D Thin Nanoflakes Assembled on Mesoporous Carbon Nanorods for Enhancing Electrocatalysis and for Improving Asymmetric Supercapacitors".ADVANCED FUNCTIONAL MATERIALS (2016).
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