Thermoelectrical characterization of new material based on PANI/zeolite HY composite, used for the detection of carbon dioxide
Author:
Publisher
Springer Science and Business Media LLC
Subject
Materials Chemistry,Polymers and Plastics
Link
http://www.nature.com/articles/pj2012232.pdf
Reference43 articles.
1. Malinauskas, A. Chemical deposition of conducting polymer. Polymer (Guildf) 42, 3957–3972 (2001).
2. Ohtani, A., Abe, M. & Ezoe, M. Synthesis and properties of high-molecular-weight soluble polyaniline and its application to the 4 mb-capacity barium ferrite floppy disks antistatic coating. Synthet. Metal. 55-57, 3696–3701 (1993).
3. Davies, S. J., Ryan, T. G., Wilde, C. J. & Beyef, G. Processable forms of conductive polyaniline. Synthet. Metal. 69, 209–210 (1995).
4. Samrana, K., Vazid, A., Zulfequar, M., Mazharul Haq, M. & Husain, M. Electrical, thermal and spectroscopic studies of Te doped polyaniline. Curr. Appl. Phys. 7, 68–75 (2007).
5. Kim, J., Kwon, S. & Ihm, D. Synthesis and characterization of organic soluble polyaniline prepared by one-step emulsion polymerization. Curr. Appl. Phys. 7, 205–210 (2007).
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