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Recent Progress and Future Prospects on All-Organic Polymer Dielectrics for Energy Storage Capacitors

📅 Published: December 23, 2021 👤 Qi‐Kun Feng, Shao‐Long Zhong, Jia‐Yao Pei et al. 📖 Chemical Reviews 📊 693 citations
AI-Generated Summary

With the development of advanced electronic devices and electric power systems, polymer-based dielectric film capacitors with high energy storage capability have become particularly important. In addition, the applications of computer-aided calculation including density functional theory, machine learning, and materials genome in rational design and performance prediction of polymer dielectrics are reviewed in detail.

⚡ This is an original paraphrased summary — not copied from the abstract. Full paper available at the source link below.

Key Findings
  • 1 Compared with polymer nanocomposites with widespread attention, all-organic polymers are fundamental and have been proven to be more effective choices in the process of scalable, continuous, and large-scale industrial production, leading to many dielectric and energy storage applications.
  • 2 In the past decade, efforts have intensified in this field with great progress in newly discovered dielectric polymers, fundamental production technologies, and extension toward emerging computational strategies.
  • 3 This review summarizes the recent progress in the field of energy storage based on conventional as well as heat-resistant all-organic polymer materials with the focus on strategies to enhance the dielectric properties and energy storage performances.
Why It Matters

This work deepens our understanding of the fundamental laws governing the universe, from subatomic particles to cosmic structures.

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Article Details
Source OpenAlex
Category ⚛️ Physics & Space Science
Published Dec 23, 2021
Journal Chemical Reviews
DOI 10.1021/acs.chemrev.1c00793
Citations 693
Authors Qi‐Kun Feng, Shao‐Long Zhong, Jia‐Yao Pei, Yu Zhao, Dongli Zhang