欢迎登录材料期刊网

材料期刊网

高级检索

以一种各向同性沥青为原料,通过不同恒温时间制备了具有不同软化点的两种中间相沥青,而后直接用KOH活化获得活性炭.考察了中间相沥青软化点对所得活性炭结构的影响,研究了以所制活性炭为电极材料的双电层电容器的性能.结果表明:两种中间相沥青的软化点分别为280℃和330℃,所得活性炭的比表面积分别为1337m2·g-1和1300m2·g-1.以两种活性炭为电极材料的双电层电容器在放电电流密度为50mA/g时的比容量分别为190.8F·g-1和255.6F·g-1.循环伏安测试表明:较低软化点中间相沥青制备的活性炭电极材料具有较好的矩形形状.

Two kinds of mesophase pitches with different softening points were prepared at different soaking times and directly activated with KOH to study the effects of the softening point on the textural characteristics of the resulting activated carbons and their behavior as electrodes in capacitors. Results show that the softening points of the two mesophase pitches are 280 and 330℃, and the specific surface areas of the activated carbons are 1337 and 1300m2·g-1,respectively. The specific capacitance of the higher softening point mesophase pitch-derived carbon is higher(255.6F·g-1)than that of the lower softening point mesophase pitch-derived carbon(190.8F·g-1)at the same current density.Cyclic voltammograms show that the lower softening point mesophase pitch-derived carbon exhibits better rectangular-shaped I-V curves. The softening points of the mesophase pitches prepared from even the same precursor can significantly affect the electrochemical performance of the resulting activated carbons.

参考文献

[1] Hwang S W;Hyun S H .Synthesis and characterization of tin oxide/carbon aerogel composite electrodes for electrochemical supercapacitors[J].Journal of Power Sources,2002,105:189-194.
[2] 李强,李开喜,范慧,谷建宇,孙国华.化学沉积法制备氧化锰/多孔炭复合材料及其电化学性能[J].新型炭材料,2007(03):227-234.
[3] Ick-Jun Kim;Sunhye Yang;Min-Je Jeon;Seong-In Moon;Hyun-Soo Kim;Yoon-Pyo Lee;Kye-Hyeok An;Young-Hee Lee .Structures and electrochemical performances of pyrolized carbons from graphite oxides for electric double-layer capacitor[J].Journal of Power Sources,2007(1):621-625.
[4] 刘希邈,詹亮,滕娜,杨登莲,曾小春,张睿,凌立成.超级电容器用沥青焦基活性炭的制备及其电化学性能[J].新型炭材料,2006(01):48-53.
[5] Janes A;Kurig H;Lust E .Characterization of activated nanoporous carbon for supercapacitor electrode materials[J].CARBON,2007,45:1226-1233.
[6] 文越华,曹高萍,程杰,杨裕生.纳米孔玻态炭-超级电容器的新型电极材料I. 固化温度对其结构和电容性能的影响[J].新型炭材料,2003(03):219-224.
[7] Arulepp M;Leis J;Latt M et al.The advanced carbide-derived carbon based supercapacitors[J].Journal of Power Sources,2006,162:1460-1466.
[8] Weng T C;Teng H .Characterization of high porosity carbon electrodes derived from mesophase pitch for electric double layer capacitors[J].Journal of the Electrochemical Society,2001,148:A368-A373.
[9] Mora E;Ruiz R;Santamara R et al.Influence of mesophase activation conditions on the specific capacitance of the resulting carbons[J].Journal of Power Sources,2006,156:719-724.
[10] Carcia R;Crespo J L;Martin S C et al.Development of meaophase from a low-temperature coal tar pitch[J].Energy and Fuels,2003,17:291-301.
[11] 李同起,王成扬.碳质中间相形成机理研究[J].新型炭材料,2005(03):278-285.
[12] Fuertes A B;Pico F;Rojo J M .Influence of pore structure on electric double layer capacitance of template mesoporous carbons[J].Journal of Power Sources,2004,133:329-336.
[13] Du D Y .Studies of the activated carbons used in double layer supercapacitors[J].Journal of Power Sources,2002,133:403-411.
[14] Liu YH.;Zheng T.;Dahn JR.;Xue JS. .MECHANISM OF LITHIUM INSERTION IN HARD CARBONS PREPARED BY PYROLYSIS OF EPOXY RESINS[J].Carbon: An International Journal Sponsored by the American Carbon Society,1996(2):193-200.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%