Original Article
  • Photothermoelectric Effect of Graphene-polyaniline Composites
  • Jongwan Choi*†

  • Department of Chemistry and Life Science, Sahmyook University, Seoul 01795, Korea

  • 그래핀-폴리 아닐린 복합체의 광열전 효과 연구
  • 최종완*†

  • This article is an open access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.

References
  • 1. Liu, Y., Lan, X., Xu, J., Zhou, W., Liu, C., Liu, C., Liu, P., Li, M., and Jiang, F., “Organic/Inorganic Hybrid Boosting Energy Harvesting Based on the Photothermoelectric Effect”, ACS Applied Materials & Interfaces, Vol. 13, No. 36, 2021, pp. 43155-43162.
  •  
  • 2. Kang, G.-H., Seong, K., Kim, M., Kim, I. Bang, G., Kim, I.C., Park, H.W., and Park, Y.-B., “Thermoelectric Composites Based on Carbon Nanotubes and Micro Glass Bubbles,” Composites Research, Vol. 28, No. 2, 2015, pp. 70-74.
  •  
  • 3. Wang, Y., Yang, L., Shi, X.-L., Shi, X., Chen, L., Dargusch, M. S., Zou, J., and Chen, Z.-G., “Flexible Thermoelectric Materials and Generators: Challenges and Innovations”, Advanced Materials, Vol. 31, No. 29, 2019, 1807916.
  •  
  • 4. Wölfing, B., Kloc, C., Teubner, J., and Bucher, E., “High Performance Thermoelectric Tl9BiTe6 with an Extremely Low Thermal Conductivity”, Physical Review Letters, Vol. 86, No. 19, 2001, pp. 4350-4354.
  •  
  • 5. Pei, Y., LaLonde, A., Iwanagaa, S., and Snyder, G.J., “High Thermoelectric Figure of Merit in Heavy Hole Dominated PbTe”, Energy Environmental Science, Vol. 4, No. 6, 2011, pp. 2085-2089.
  •  
  • 6. Choi, J., Jang, S.K., and Kim, F.S., “Effects of Doping States of Polyaniline Thin Films on their Photo-Responsive Properties under Visible and Near-Infrared Irradiation”, Physica Status Solidi A-applications and Materials Science, Vol. 215, No. 20, 2018, 1701019.
  •  
  • 7. Wu, J., Sun, Y., Pei, W.-B., Huang, L., Xu, W., and Zhang, Q., “Polypyrrole Nanotube Film for Flexible Thermoelectric Application,” Synthetic Metals, Vol. 196, No. 1, 2014, pp. 173-177.
  •  
  • 8. Lee, J.U., Jo, W.H., Lee, W., and Byun, J.-H., “Preparation and Characterization of Water-soluble Polyaniline/carbon Nanotube Composites, Composites Research, Vol. 24, No. 6, 2011, pp. 1-6.
  •  
  • 9. Ni, D., Song, H., Chen, Y., and Cai, K., “Free-standing Highly Conducting PEDOT Films for Flexible Thermoelectric Generator”, Energy, Vol. 170, No. 1, 2019, pp. 53−61.
  •  
  • 10. Song, H., and Cai, K., “Preparation and Properties of PEDOT: PSS/Te Nanorod Composite Films for Flexible Thermoelectric Power Generator”, Energy, Vol. 125, No. 1, 2017, pp. 519−525.
  •  
  • 11. Hong, X., Fu, J., Liu, Y., Li, S., Wang, X., Dong, W., and Yang, S., “Recent Progress on Graphene/Polyaniline Composites for High-performance Supercapacitors”, Materials, Vol. 12, No. 9, 2019, pp. 1451.
  •  
  • 12. Liu, Y., Deng, R., Wang, Z., and Liu, H., “Carboxyl-functionalized Graphene Oxide–polyaniline Composite as a Promising Supercapacitor Material,” Journal of Materials Chemistry, Vol. 22, No. 27, 2012, pp. 13619-13624.
  •  
  • 13. Wang, Y., Gao, X., Fu, Y., Wu, X., Wang, Q., Zhang, W., and Luo, C., “Enhanced Microwave Absorption Performances of Polyaniline/graphene Aerogel by Covalent Bonding”, Composites Part B: Engineering, Vol. 169, No. 1, 2019, pp. 221-228.
  •  
  • 14. Hummers, W.S., and Offeman, R.E., “Preparation of Graphitic Oxide”, Journal of American Chemical Society, Vol. 80, No. 6, 1958, pp. 1339.
  •  
  • 15. Huang, Z., Li, L., Wang, Y., Zhang, C., and Liu, T., “Polyaniline/graphene Nanocomposites Towards High-performance Supercapacitors: A Review”, Composites Communications, Vol. 8, No. 1, 2018, pp. 83-91.
  •  
  • 16. Gao, Z., Wang, F., Chang, J., Wu, D., Wang, X., Xu, F., Gao, S., and Jiang, K., “Chemically Grafted Graphene-polyaniline Composite for Application in Supercapacitor”, Electrochimica Acta, Vol. 133, No. 1, 2014, pp. 325-334.
  •  
  • 17. Liu, Y., Ma, Y., Guang, S., Ke, F., and Xu, H., “Polyaniline-graphene Composites with a Three-dimensional Array-based Nanostructure for High-performance Supercapacitors”, Carbon, Vol. 83, No. 1, 2015, pp. 79-89.
  •  
  • 18. Kumar, N.A., Choi, H., Shin, Y.R., Chang, D.W., Dai, L., and Baek, J., “Polyaniline-grafted Reduced Graphene Oxide for Efficient Electrochemical Supercapacitors,” ACS Nano, Vol. 6, No. 2, 2012, pp. 1715-1723.
  •  
  • 19. Mombru, D., Romero, M., Faccio, R., and Mombru, A.W., “Effect of Graphene-oxide on the Microstructure and Charge Carrier Transport of Polyaniline Nanocomposites under Low Applied Electric Fields”, Journal of Applied Physics, Vol. 121, No. 4, 2017, 045109.
  •  
  • 20. Dey, A.K., Kumar, G., Maji, P.K., Chakrabarty, R., and Nandi, U., “Zener-like Electrical Transport in Polyaniline–graphene Oxide Nanocomposites,” RSC Advances, Vol. 10, No. 8, 2020, pp. 4733-4744.
  •  

This Article

Correspondence to

  • Jongwan Choi
  • Department of Chemistry and Life Science, Sahmyook University, Seoul 01795, Korea

  • E-mail: jchoi@syu.ac.kr