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Gate-Induced Superconductivity in a Solution Processed Organic Polymer Film

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Essay / Research Paper Abstract

This 8 page paper provides an overview of an article on gate-induced superconductivity in a solution processed organic polymer film. The researchers recognized that considerable research has been conducted in recent years regarding the best options for low-cost replacements for conventional metals and other semiconductors. They outline their own research study, and this paper also shows some conflicts that arose from this study. Bibliography lists 7 sources.

Page Count:

8 pages (~225 words per page)

File: MH11_MHGateIn.rtf

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The researchers recognized that considerable research has been conducted in recent years regarding the best options for low-cost replacements for conventional metals and other semiconductors (Schon et al, 2001). As a result, the study of superconductivity has also come into view, but these researchers recognized that it was more common for the research to reflect the views of charge transport for organic materials (in both doped-metallic and semiconducting state). This study purported to demonstrate superconductivity in these polymers (Schon et al, 2001). In understanding the existing research by Schon et al (2001) and subsequent claims against their findings, it is necessary to understand the conceptual views presented by these researchers, including their views of the distinct metal-insulator transition and metallic levels of conductivity that are persistent and particular to a defined polymer transistor. The focus on the use of polythiophene film for superconducting is also an element of this research and underscores some of the complexities of the findings of the researchers. Existing Research and the Basis of the Article A number of research studies have considered the mechanism of charge transport in conducting polymers, and these have existed since the earliest studies of metallic conductors. Metallic conductors and polymers can be altered to change their conductivity by adding impurities, and many researchers have recognized the use of this process in developing conductors that replicate the conductivity of copper (Schon et al, 2001). In essence, the researchers also acknowledged that conductivity varies by metallic property and that different metals are impacted by factors like temperature. As a result, the development of polymer films, which are composed of two regions, has occurred to provide order in the transport process (Schon et al, 2001). In conjunction with this, the researchers also ...

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