Enhanced energy density and extraction efficiency of polar sol–gel dielectric films with reduced residual ions

Author:

Kathaperumal Mohanalingam12345,Kim Yunsang6784ORCID,Johnstone Lucas R.1234,Tillotson John P.1234,Park Yohan1234,Pan Ming-Jen9104,Perry Joseph W.1234ORCID

Affiliation:

1. School of Chemistry and Biochemistry, and Center for Organic Photonics and Electronics (COPE)

2. Georgia Institute of Technology

3. Atlanta

4. USA

5. 3D Systems Packaging Research Center

6. Department of Sustainable Bioproducts

7. Mississippi State University

8. Starkville

9. Naval Research Laboratory

10. Washington

Abstract

Reduction of residual ions improved overall dielectric properties of an alkoxysilane-based dielectric film capacitor, yielding maximum extractable energy density of 32 J cm−3 at 685 V μm−1.

Funder

Multidisciplinary University Research Initiative

Office of Naval Research

National Institute of Food and Agriculture

Publisher

Royal Society of Chemistry (RSC)

Subject

Materials Chemistry,General Chemistry

Reference39 articles.

1. J. B. Goodenough , H. D.Abruna and M. V.Buchanan , Basic Research Needs for Electrical Energy Storage. Report of the Basic Energy Sciences Workshop on Electrical Energy Storage, Report DOE/SC/BES-0702, U.S. Department of Energy (DOE) Office of Science (SC), 2007

2. Polymer nanocomposites for electrical energy storage

3. Novel Ferroelectric Polymers for High Energy Density and Low Loss Dielectrics

4. High Energy and Power Density Capacitors from Solution-Processed Ternary Ferroelectric Polymer Nanocomposites

5. 50th Anniversary Perspective: Dielectric Phenomena in Polymers and Multilayered Dielectric Films

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