4.7 Article

Review of the Common Deposition Methods of Thin-Film Pentacene, Its Derivatives, and Their Performance

期刊

POLYMERS
卷 14, 期 6, 页码 -

出版社

MDPI
DOI: 10.3390/polym14061112

关键词

pentacene; thin-film deposition; solution-process; thermal vacuum evaporation; organic thin-film transistor; inkjet printing

资金

  1. Kementerian PendidikanMalaysia Grant [FRGS/1/2018/TK04/UKM/02/11]
  2. Universiti Kebangsaan Malaysia Grant [GUP-2018-158]
  3. Universiti Tenaga Nasional, Innovative Research and Management Centre BOLD Grant [J510050002]
  4. UNITEN R&D Sdn Bhd Seed Fund [U-TV-RD-20-10]

向作者/读者索取更多资源

This review provides an overview of different deposition methods for pentacene and its derivatives, including thermal evaporation and solution-processable methods. It offers recommendations for specific device applications based on film quality and device performance.
Pentacene is a well-known conjugated organic molecule with high mobility and a sensitive photo response. It is widely used in electronic devices, such as in organic thin-film transistors (OTFTs), organic light-emitting diodes (OLEDs), photodetectors, and smart sensors. With the development of flexible and wearable electronics, the deposition of good-quality pentacene films in large-scale organic electronics at the industrial level has drawn more research attention. Several methods are used to deposit pentacene thin films. The thermal evaporation technique is the most frequently used method for depositing thin films, as it has low contamination rates and a well-controlled deposition rate. Solution-processable methods such as spin coating, dip coating, and inkjet printing have also been widely studied because they enable large-scale deposition and low-cost fabrication of devices. This review summarizes the deposition principles and control parameters of each deposition method for pentacene and its derivatives. Each method is discussed in terms of experimentation and theory. Based on film quality and device performance, the review also provides a comparison of each method to provide recommendations for specific device applications.

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