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Poster
Acknowledgement
Many people have influenced the shape and content of this project and have supported us throughtout this journey. We would like to thank each and every one of them for the support and guidance which helped us in completing our website.
Special thanks for Prof. Faith Nightingale and QMplus, without them, this website wouldn't have come into existence at all.
Outline
Abstract:
Transparent conductive film is a kind of film which can conduct electricity and has high transparency in visible light range. This poster will introduce fabricationing methods, how they work, the properties of several common types and their safety data. We believe that studying this kind of material can accelerate the photoelectric industry in China.
Keywords: Transparent conductive film, ITO, Sputtering,
Nanoparticle dispersion
Introduction:
Transparent conductive film is a kind of film which can conduct electricity and has high transparency in visible light range.
Literature Review:
History
In the early 20th century, the coexistence of transparency and conductivity was first found in oxides of Cd. In the 1960s ITO became the main application of transparent conductive materials and AZO was widely studied in the 1980s as the best alternative material for ITO. Since the discovery of carbon nanotubes (CNTs) in 1991 by Iijima, scientist quickly find its unique photoelectric properties can replace the TCO oxide film for new exploration.
Properties
Here shows some of important photoelectric properties of them. We can easily find as new materials emerge from scientific research, they have more or less stronger properties. In the selection of different target properties, customers' choice is enriched. Not only that, the data in the table will change with the minor changes of various products, and the original products will be constantly optimized.
Safety
In short, with the exploration of TCF, there are still some problems with its improper material handling. If our group hands in the product, we will hand in the safe ITO product. However, it means that there is still a lot of room for TCF to make progress in the future, and it can be replaced by comparing with substances with similar physical and chemical properties but less dangerous.
Property Profile
Reflection
In the past, we used to search for information and answer questions directly. But this time, we started from searching for information in articles and papers, to analyzing the obtained information in TCF, to selecting which information can be displayed succinctly, to adding comparison links to increase readers' understanding of the development of TCF in the historical dimension, and then to conceive how an arrangement can fully express the above Finally, the poster was finished.
We hope that such a complete experience will play a template role in similar tasks in the future, learn how to cooperate with fewer groups, and hope that both ourselves and the audience can have a deeper understanding and interest in TCF.