Preparation of activated carbons from mesophase pitch and their electrochemical properties

Yan-qing Lai , Jing Li , Hai-shen Song , Zhi-an Zhang , Jie Li , Ye-xiang Liu

Journal of Central South University ›› 2007, Vol. 14 ›› Issue (5) : 633 -637.

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Journal of Central South University ›› 2007, Vol. 14 ›› Issue (5) : 633 -637. DOI: 10.1007/s11771-007-0121-1
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Preparation of activated carbons from mesophase pitch and their electrochemical properties

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Abstract

The influences of molar ratio of KOH to C and activated temperature on the pore structure and electrochemical property of porous activated carbon from mesophase pitch activated by KOH were investigated. The surface areas and the pore structures of activated carbons were analyzed by nitrogen adsorption, and the electrochemical properties of the activated carbons were studied using two-electrode capacitors in organic electrolyte. The results indicate that the maximum surface area of 3 190 m2/g is obtained at molar ratio of KOH to C of 5:1, the maximum specific capacitance of 122 F/g is attained at molar ratio of KOH to C of 4:1, and 800 °C is the proper temperature to obtain the maximum surface area and capacitance.

Keywords

supercapacitor / activated carbon / mesophase pitch / chemical activation / pore structure / electrochemical properties

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Yan-qing Lai, Jing Li, Hai-shen Song, Zhi-an Zhang, Jie Li, Ye-xiang Liu. Preparation of activated carbons from mesophase pitch and their electrochemical properties. Journal of Central South University, 2007, 14(5): 633-637 DOI:10.1007/s11771-007-0121-1

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References

[1]

KotzR., CarlenM.. Principle and application of electrochemical capacitors[J]. Electrochimica Acta, 2000, 45(15/16): 2483-2498

[2]

Vix-GuterlC., SaadallahS.. Supercapacitor electrodes from new ordered porous carbon materials obtained by a templating procedure[J]. Materials Science and Engineering B, 2004, B108(1/2): 148-155

[3]

SarangagapaniS., TilakB. V., ChenC. P.. Materials for electrochemical capacitors[J]. J Electrochem Soc, 1996, 143(11): 3791-3798

[4]

BurkeA.. Ultracapacitors: Why, how, and where is the technology[J]. Journal of Power Sources, 2000, 91(1): 37-50

[5]

ConwayB. E., PellW. G.. Power limitations of supercapacitor operation associated with resistance and capacitance distribution in porous electrode devices[J]. Journal of Power Sources, 2002, 105(2): 169-181

[6]

HangS.. Activated carbons and double layer capacitance[J]. Electrochimica Acta, 1996, 41(10): 1633-1639

[7]

WuF. C., TsengR. L., HuC. C., et al.. Effects of pore structure and electrolyte on the capacitive characteristics of steam-and KOH-activated carbons for supercapacitors[J]. Journal of Power Sources, 2005, 144(1): 302-309

[8]

MerinoC., SotoP., Vilaplana-OrtegoE., et al.. Carbon nanofibres and activated carbon nanofibres as electrodes in supercapacitors[J]. Carbon, 2005, 43(3): 551-557

[9]

QuD.-y., ShiH.. Studies of activated carbons used in double-layer capacitors[J]. Journal of Power Sources, 1998, 74(1): 99-107

[10]

Lozano-CastellóD., Lillo-RódenasM. A., Cazorla-AmorósD., et al.. Preparation of activated carbons from Spanish anthracite: I. Activation by KOH[J]. Carbon, 2001, 39(5): 741-749

[11]

AhmadpourA., DoD. D.. Preparation of activated carbon from macadamia nutshell by chemical activation[J]. Carbon, 1997, 35(12): 1723-732

[12]

Molina-SabioM., Rodríguez-ReinosoF.. Role of chemical activation in the development of carbon porosity[J]. Colloids and Surfaces A: Physicochem Eng Aspects, 2004, 241: 15-25

[13]

BabelK., JurewiczK.. KOH activated carbon fabrics as supercapacitor material[J]. Journal of Physics and Chemistry of Solids, 2004, 65(2/3): 275-280

[14]

LiJ., LiJ., LaiY.-q., et al.. Influence of KOH activation techniques on pore structure and electrochemical property of carbon electrode materials[J]. Journal of Central South University of Technology, 2006, 13(4): 360-366

[15]

TengH. S., WangS. C.. Preparation of porous carbons from phenol-formaldehyde resins with chemical and physical activation[J]. Carbon, 2000, 38(6): 817-824

[16]

CarvalhoA. P., CardosoB., PiresJ., et al.. Preparation of activated carbons from cork waste by chemical activation with KOH[J]. Carbon, 2003, 41(14): 2873-2876

[17]

BarbieriO., HahnM., HerzogA., et al.. Capacitance limits of high surface area activated carbons for double layer capacitors[J]. Carbon, 2005, 43(6): 1303-1310

[18]

KierzekK., FrackowiakE., LotaG., et al.. Electrochemical capacitors based on highly porous carbons prepared by KOH activation[J]. Electrochimica Acta, 2004, 49(4): 515-523

[19]

WuF. C., TsengR. L., HuC. C., et al.. The capacitive characteristics of activated carbons: Comparisons of the activation methods on the pore structure and effects of the pore structure and electrolyte on the capacitive performance[J]. Journal of Power Sources, 2006, 159(2): 1532-1542

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