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3D-honeycomb carbons for high performance electrical double layer capacitors electrodes

3D-honeycomb carbons for high performance electrical double layer capacitors electrodes
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摘要 Sodium fulvic acid based hierarchical porous carbons(SFA-HPCs) with a specific surface area of 1919 m^2·g^(–1) and total volume of 1.7 cm^3·g^(–1) has been synthesized by a simple self-template method. The carbon skeleton can be formatted by the decomposition process of sodium fulvic acid(SFA) in a N_2 atmosphere. The sodium compund in SFA is used as a self-template to create the hierarchical porous structure. The unique hierarchical structure of SFA-HPCs provides an efficient pathway for electrolyte ions to be diffused into the internal surfaces of bulk electrode particles. It results in a high charge storage capacitance of 186 F·g^(–1) at current load of 40 A·g^(–1). The capacitance of 230 F·g^(–1) at 0.05 A·g^(–1) and 186 F·g^(–1) at 40 A·g^(–1) show its good rate capability. Besides, it also achieves desirable cycling stability, 99.4% capacitance remained after 10000 cycles at 40 A·g^(–1). Sodium fulvic acid based hierarchical porous carbons(SFA-HPCs) with a specific surface area of 1919 m^2·g^–1 and total volume of 1.7 cm^3·g^–1 has been synthesized by a simple self-template method. The carbon skeleton can be formatted by the decomposition process of sodium fulvic acid(SFA) in a N2 atmosphere. The sodium compund in SFA is used as a self-template to create the hierarchical porous structure. The unique hierarchical structure of SFA-HPCs provides an efficient pathway for electrolyte ions to be diffused into the internal surfaces of bulk electrode particles. It results in a high charge storage capacitance of 186 F·g^–1 at current load of 40 A·g^–1. The capacitance of 230 F·g^–1 at 0.05 A·g^–1 and 186 F·g^–1 at 40 A·g^–1 show its good rate capability. Besides, it also achieves desirable cycling stability, 99.4% capacitance remained after 10000 cycles at 40 A·g^–1.
出处 《储能科学与技术》 CAS 2016年第4期527-531,共5页 Energy Storage Science and Technology
基金 supported by the Ningbo’s Industrial Technology Innovation and Industrialization of Scientific and Technological Achievements Program(2013B6003)
关键词 sodium fulvic acid hierarchical porous carbons self-template method high rate capability sodium fulvic acid hierarchical porous carbons self-template method high rate capability
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参考文献8

  • 1ZHANG Z Hf ZHOU Z F,PENG H R,et al.Nitrogen-and oxygen-containing hierarchical porous carbon frameworks for high-performance supercapacitors[J].Electrochim.Acta,2014,134:471-477.
  • 2BALATHANIGAIMANIM S,SHIM WG,LEE M J,et al.Highly porous electrodes from novel com grains-based activated carbons for electrical double layer capacitors[J].EIectrochem.Commun.,2008,10(6):868-871.
  • 3QIAO Z J,CHEN M M,WANG C Y,et al.Humic acids-based hierarchical porous carbons as high-rate performance electrodes for symmetric supercapacitors[J].Bioresour.Technol.,2014,163:386-389.
  • 4GUO Y,SHI Z Qf CHEN M M,et al.Hierarchical porous carbon derived from sulfonated pitch for electrical double layer capacitors[J].J.Power Sources,2014,252:235-243.
  • 5BALACH J,TAMBORINIL,SAPAG K,et al.Facile preparation of hierarchical porous carbons with tailored pore size obtained using a cationic polyelectrolyte as a soft template[J].Colloids Surf.A,2012,415:343-348.
  • 6CHEN W X,ZHANG H,HUANG Y Q,et al.A fish scale based hierarchical lamellar porous carbon material obtained using a natural template for high performance electrochemical capacitors[J].J.Mater.Chem.,2010,20:4773-4775.
  • 7GAO Y,ZHANG W L,YUE Q Y,et al.Simple synthesis of hierarchical porous carbon from Enteromorpha prolifera by a self-template method for supercapacitor electrodes[J],J.Power Sources,2014,270:403-410.
  • 8LV Y K,GAN L H,LIU M X,et al.A self-template synthesis of hierarchical porous carbon foams based on banana peel for supercapacitor electrodes[J]J.Power Sources,2012,209:152-157.

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