4.7 Article

Solution-processed metal oxide dielectric films: Progress and outlook

期刊

APL MATERIALS
卷 9, 期 12, 页码 -

出版社

AIP Publishing
DOI: 10.1063/5.0066014

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资金

  1. Korea Electric Power Corporation [R21XO01-20]
  2. National Research Foundation of Korea (NRF) - Ministry of Science and ICT, Korea [NRF-2018M3A7B4070988, NRF-2020R1F1A1073564, NRF-2021R1A4A1033155, NRF-2020M3D1A1030660, NRF2021R1A2C1013015, NRF-2020M1A2A2080748]
  3. GIST Research Institute (GRI) - GIST

向作者/读者索取更多资源

There is a growing interest in using the sol-gel approach to create high-quality dielectric materials, leading to the development of functional electronic devices in a scalable and rapid manner. Understanding and investigating the fundamentals of sol-gel dielectrics are essential for improving electronic devices. Recent advances in various sol-gel processed dielectric materials and their applications to functional electronic devices show promising innovations for cost-effective high-performance electronics in the future.
There has been growing interest in the use of the sol-gel approach to form high-quality dielectric materials. Their tailored properties allow for developing functional electronic devices in a scalable and rapid manner. According to physicochemical principles, the displacement and response behavior of charges under an applied external field can manifest in unique dielectric properties, providing useful information to improve the process, design, and quality of electronic devices. Therefore, a systematic and in-depth investigation of the fundamentals of sol-gel dielectrics is necessary. In this Research Update, we present recent advances in various sol-gel-processed dielectric materials and their applications to functional electronic devices. A brief introduction to sol-gel chemistry to form oxide dielectric films and the basis of physical mechanisms under electrical fields are discussed. Along with the dielectric properties, recent achievements of proof-of-concept experiments and their various applications to functional electronic devices are introduced. It is expected that further innovations in solution-processed metal oxide dielectrics will achieve cost-effective high-performance functional electronics in the near future.& nbsp;(C)2021 Author(s).

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