Electrical properties of plasma-polymerized thin films

Electrical properties of plasma-polymerized thin films


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ABSTRACT Thin organic polymer films were prepared by plasma polymerization in the heated system. The films obtained were very smooth and free of pinholes. The electrical conductivities


ranged from 10−6 to 10−7 S cm−1 and the Al/Polymer/Au cells with polymers produced from fumaronitrile and _p_-aminobenzonitrile showed rectifying effect. Both IR observations and electrical


measurements confirmed that the conjugated double bonds formed by plasma polymerization in the heated system were responsible for high electrical conductivity. The plot of logσ _vs_. 1/_T_


gave straight line and 0.29 eV of the activation energy was determined for fumaronitrile polymer. SIMILAR CONTENT BEING VIEWED BY OTHERS EFFECT OF HEAT TREATMENT WITH DIFFERENT HEAT TRANSFER


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Department of Material Systems Engineering, Faculty of Technology, Tokyo University of Agriculture and Technology, Yun Heum Park, Hiroaki Tsutsumi, Shigeru Tasaka & Seizo Miyata Authors


* Yun Heum Park View author publications You can also search for this author inPubMed Google Scholar * Hiroaki Tsutsumi View author publications You can also search for this author inPubMed 


Google Scholar * Shigeru Tasaka View author publications You can also search for this author inPubMed Google Scholar * Seizo Miyata View author publications You can also search for this


author inPubMed Google Scholar RIGHTS AND PERMISSIONS Reprints and permissions ABOUT THIS ARTICLE CITE THIS ARTICLE Park, Y., Tsutsumi, H., Tasaka, S. _et al._ Electrical Properties of


Plasma-Polymerized Thin Films. _Polym J_ 18, 713–718 (1986). https://doi.org/10.1295/polymj.18.713 Download citation * Issue Date: 01 October 1986 * DOI:


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currently available for this article. Copy to clipboard Provided by the Springer Nature SharedIt content-sharing initiative KEYWORDS * Plasma Polymerization * Electrical Conductivity *


Fumaronitrile * Isophthalonitrile * _p_-Aminobenzonitrile * Organic Semiconductor