All Issue

2018 Vol.50, Issue 5 Preview Page
30 October 2018. pp. 39-47
Abstract
References

Literature Cited

1
Y. S. Kim, W. J. Youe, S. J. Kim, O. K. Lee and S. S. Lee, Journal of Wood Chemistry & Technology, Preparation of a thermoplastic lignin-based biomaterial through atom transfer radical polymerization, 35; 251-259 (2015)

Kim, Y. S., Youe, W. J., Kim, S. J., Lee, O. K., and Lee, S. S., Preparation of a thermoplastic lignin-based biomaterial through atom transfer radical polymerization, Journal of Wood Chemistry & Technology 35:251-259 (2015).

10.1080/02773813.2014.937006
2
S. J. Kim, J. W. Kang, W. J. Youe, S. M. Lee and Y. S. Kim, Journal of Korea TAPPI, Preparation and mechanical properties of melt-spun carbon fibers from wood tar and wood tar/kraft lignin blends, 49(5); 56-64 (2017)

Kim, S. J., Kang, J. W., Youe, W. J., Lee, S. M., and Kim, Y. S., Preparation and mechanical properties of melt-spun carbon fibers from wood tar and wood tar/kraft lignin blends, Journal of Korea TAPPI 49(5):56-64 (2017).

10.7584/jktappi.2017.10.49.5.56
3
A. J. Ragauskas, G. T. Beckham, M. J. Biddy, R. Chandra, F. Chen, M. F. Davis, B. H. Davison, R. A. Dixon, P. Gilna, M. Keller, P. Langan, A. K. Naskar, J. N. Saddler, T. J. Tschaplinski, G. A. Tuskan and C. E. Wyman, Science, Lignin valorization: improving lignin processing in the biorefinery, 344; 1246843 (2014)

Ragauskas, A. J., Beckham, G. T., Biddy, M. J., Chandra, R., Chen, F., Davis, M. F., Davison, B. H., Dixon, R. A., Gilna, P., Keller, M., Langan, P., Naskar, A. K., Saddler, J. N., Tschaplinski, T. J., Tuskan, G. A., and Wyman, C. E., Lignin valorization: improving lignin processing in the biorefinery. Science 344:1246843 (2014).

10.1126/science.1246843
4
H. Huang, C. Han, G. Wang and C. Feng, Electrochimica Acta, Lignin combined with polypyrrole as a renewable cathode material for H2O2 generation and its application in the electro-Fenton process for azo dye removal, 259; 637-646 (2018)

Huang, H., Han, C., Wang, G., and Feng, C., Lignin combined with polypyrrole as a renewable cathode material for H2O2 generation and its application in the electro-Fenton process for azo dye removal, Electrochimica Acta 259:637-646 (2018).

10.1016/j.electacta.2017.11.014
5
G. Milczarek and O. Inganäs, Science, Renewable cathode materials from biopolymer/conjugated polymer interpenetrating networks, 335; 1468-1471 (2012)

Milczarek, G. and Inganäs, O., Renewable cathode materials from biopolymer/conjugated polymer interpenetrating networks, Science 335:1468-1471 (2012).

10.1126/science.1215159
6
S. Asmassie, A. Elfwing, E. W. H. Jager, Q. Bao and O. Inganäs, Journal of Materials Chemistry A, A renewable biopolymer cathode with multivalent metal ions for enhanced charge storage, 2; 1974-1979 (2014)

Asmassie, S., Elfwing, A., Jager, E. W. H., Bao, Q., and Inganäs, O., A renewable biopolymer cathode with multivalent metal ions for enhanced charge storage, Journal of Materials Chemistry A 2:1974-1979 (2014).

7
F. N. Ajjan, M. J. Jafri, T. Rębiś, T. Ederth and O. Inganäs, Journal of Materials Chemistry A, Spectroelectrochemical investigation of redox states in a polypyrrole/lignin composite electrode material, 3; 12927-12937 (2015)

Ajjan, F. N., Jafri, M. J., Rębiś, T., Ederth, T., and Inganäs, O., Spectroelectrochemical investigation of redox states in a polypyrrole/lignin composite electrode material, Journal of Materials Chemistry A 3:12927-12937 (2015).

10.1039/c5ta00788g
8
M. Wagner, T. Rębiś and O. Inganäs, Journal of Power Sources, Enhancing charge storage of conjugated polymer electrodes with phenolic acids, 302; 324-330 (2016)

Wagner, M., Rębiś, T., and Inganäs, O., Enhancing charge storage of conjugated polymer electrodes with phenolic acids, Journal of Power Sources 302:324-330 (2016).

10.1016/j.jpowsour.2015.10.062
9
J. C. Yangm, S. M. Kim, Y. S. Jang, H. R. Jo and J. Y. Lee, KIC News, Electrically conducting polymer-based biosensors and bioelectrodes applications, 18(6); 29-38 (2015)

Yangm, J. C., Kim, S. M., Jang, Y. S., Jo, H. R., and Lee, J. Y., Electrically conducting polymer-based biosensors and bioelectrodes applications, KIC News 18(6):29-38 (2015).

10
A. S. Graeme, K. Pon and S. B. Adam, Journal of Power Sources, Conducting-polymer-based supercapacitor devices and electrodes, 196; 1-12 (2011)

Graeme, A. S., Pon, K., and Adam, S. B., Conducting-polymer-based supercapacitor devices and electrodes, Journal of Power Sources 196:1-12 (2011).

11
J. H. Kim and E. K. Kim, Journal of Korean Society for Imaging Science & Technology, Current status and future trends in application of display materials using conductive polymers, 19(3); 39-49 (2013)

Kim, J. H. and Kim, E. K., Current status and future trends in application of display materials using conductive polymers, Journal of Korean Society for Imaging Science & Technology 19(3):39-49 (2013).

12
O. I. Jude and L. Kirill, Journal of Power Sources, Capacitanc of the polypyrrole/polyimide composite by electro -chemical impedance spectroscopy, 117; 267-272 (2003)

Jude, O. I. and Kirill. L., Capacitanc of the polypyrrole/polyimide composite by electro -chemical impedance spectroscopy, Journal of Power Sources 117:267-272 (2003).

13
A. S. Graeme, P. Chuang, J. F. Derek and Z. C. George, Electrochemistry Communications, Achieving high electrode specific capacitance with materials of low mass specific capacitance: Potentiostatically grown thick micro-nanoporous PEDOT films, 9; 83-88 (2007)

Graeme, A. S., Chuang, P., Derek, J. F., and George, Z. C., Achieving high electrode specific capacitance with materials of low mass specific capacitance: Potentiostatically grown thick micro-nanoporous PEDOT films, Electrochemistry Communications 9:83-88 (2007).

14
L. Xiangjun, D. Hui, Y. Changzhou, Y. Sudong, H. Liang, Z. Fang, S. Laifa, Z. Luojiang and Z Xiaogang, Journal of Power Sources, Polypyrrole/carbon nanotube nanocomposite enhanced the electrochemical capacitance of flexible graphene film for supercapacitors, 197; 319-324 (2012)

Xiangjun, L., Hui, D., Changzhou, Y., Sudong, Y., Liang, H., Fang, Z., Laifa, S., Luojiang, Z., and Xiaogang, Z,, Polypyrrole/carbon nanotube nanocomposite enhanced the electrochemical capacitance of flexible graphene film for supercapacitors, Journal of Power Sources 197:319-324 (2012).

15
M. R. D. Santos and H. P. D. Olieira, Química Nova, Simple method for mass production of polypyrrole/carbon nanotubes hybrid artificial muscle, 37(6); 1000-1003 (2014)

Santos, M. R. D. and Olieira, H. P. D., Simple method for mass production of polypyrrole/carbon nanotubes hybrid artificial muscle, Química Nova 37(6):1000-1003 (2014).

16
H. S. Nalwa, Journal of Materials Science, Evaluation of electrical conduction in iodine-doped polypyrrole, 27; 201-214 (1992)

Nalwa, H. S., Evaluation of electrical conduction in iodine-doped polypyrrole, Journal of Materials Science 27:201-214 (1992).

10.1007/bf02403665
17
M. Maráková, P. Humpolíček, V. Kašpárková, Z. Capáková, L. Martinková, P. Bober, M. Trchová and J. Stejskal, Applied Surface Science, Antimicrobial activity and cytotoxicity of cotton fabric coated with conducting polymers, polyaniline or polypyrrole, and with deposited silver nanoparticles, 396; 169-176 (2017)

Maráková, M., Humpolíček, P., Kašpárková, V., Capáková, Z., Martinková, L., Bober, P., Trchová, M., and Stejskal, J., Antimicrobial activity and cytotoxicity of cotton fabric coated with conducting polymers, polyaniline or polypyrrole, and with deposited silver nanoparticles, Applied Surface Science 396:169-176 (2017).

18
B. Tian and G. Zerbi, The Journal of Chemical Physics, Lattice dynamics and vibrational spectra of polypyrrole, 92(6); 3886-3898 (1990)

Tian, B. and Zerbi, G., Lattice dynamics and vibrational spectra of polypyrrole, The Journal of Chemical Physics 92(6):3886-3898 (1990).

10.1063/1.457794
19
A. H. P. D. Oliveira and H. P. de Oliveira, Fullerense, Nanotubes and Carbon Nanostructures, Electrochemical synthesis and characterization of multi-walled carbon nanotubes/polypyrrole and polypyrrole hollow nanotubes, 21(7); 594-603 (2013)

Oliveira, A. H. P. D. and de Oliveira, H. P., Electrochemical synthesis and characterization of multi-walled carbon nanotubes/polypyrrole and polypyrrole hollow nanotubes, Fullerense, Nanotubes and Carbon Nanostructures 21(7): 594-603 (2013)

20
S. J. Kim, Y. S. Kim, O. K. Lee and B. J. Ahn, Wood Science & Technology, Synthesis and characterization of kraft lignin-graft-polylactide copolymers, 50; 1293-1304 (2016)

Kim, S. J., Kim, Y. S., Lee, O. K., and Ahn, B. J., Synthesis and characterization of kraft lignin-graft-polylactide copolymers, Wood Science & Technology 50:1293-1304 (2016).

10.1007/s00226-016-0847-8
21
P. Bober, N. Gavrilov, A. Kovalcik, M. Mičušk, C. Unterweger, I. A. Pašti, I. Šeděnková, U. Acharya, J. Pfleger, G. Ćirić-Marjanović and J. Stejskal, Materials Chemistry and Physics, Electrochemical propertiese of lignin/polypyrrole composites and their carbonized analogues, 213; 352-361 (2018)

Bober, P., Gavrilov, N., Kovalcik, A., Mičušk, M., Unterweger, C., Pašti, I. A., Šeděnková, I., Acharya, U., Pfleger, J., Ćirić-Marjanović, G., and Stejskal, J., Electrochemical propertiese of lignin/polypyrrole composites and their carbonized analogues, Materials Chemistry and Physics 213:352-361 (2018).

22
J. J. Hur, M. K. Seo, H. Y. Kim, I. J. Kim and S. J. Park, Polymer, Influence of KOH activation on electrochemical performance of coal tar pitch-based activated carbons for supercapacitor, 36(6); 756-760 (2012)

Hur, J. J., Seo, M. K., Kim, H. Y., Kim, I. J., and Park, S. J., Influence of KOH activation on electrochemical performance of coal tar pitch-based activated carbons for supercapacitor, Polymer 36(6):756-760 (2012).

23
K. S. Kim and S. J. Park, Electrochimica Acta, Influence of multi-walled carbon nanotubes on the electrochemical performance of graphene nanocomposites for supercapacitor electrodes, 56; 1629-1635 (2011)

Kim, K. S. and Park, S. J., Influence of multi-walled carbon nanotubes on the electrochemical performance of graphene nanocomposites for supercapacitor electrodes, Electrochimica Acta 56:1629-1635 (2011).

10.1016/j.electacta.2010.10.043
Information
  • Publisher :Korea Technical Association of The Pulp and Paper Industry
  • Publisher(Ko) :한국펄프종이공학회
  • Journal Title :Journal of Korea TAPPI
  • Journal Title(Ko) :펄프종이기술
  • Volume : 50
  • No :5
  • Pages :39-47
  • Received Date : 2018-09-12
  • Revised Date : 2018-10-05
  • Accepted Date : 2018-10-08