Investigation of Polymer-Ceramic Nanoparticles Composite Films for Use in the Capacitive Storage of...

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Investigation of Polymer- Ceramic Nanoparticles Composite Films for Use in the Capacitive Storage of Electrical Energy Terry Stufflebeam Mentor: Dr. Randy Dillingham

Transcript of Investigation of Polymer-Ceramic Nanoparticles Composite Films for Use in the Capacitive Storage of...

Page 1: Investigation of Polymer-Ceramic Nanoparticles Composite Films for Use in the Capacitive Storage of Electrical Energy Terry Stufflebeam Mentor: Dr. Randy.

Investigation of Polymer-Ceramic Nanoparticles Composite Films for Use in the Capacitive Storage of Electrical Energy

Terry StufflebeamMentor: Dr. Randy Dillingham

Page 2: Investigation of Polymer-Ceramic Nanoparticles Composite Films for Use in the Capacitive Storage of Electrical Energy Terry Stufflebeam Mentor: Dr. Randy.

• Good Idea, wind and solar energy• The problem, energy deficiencies• The solution, energy storage devices

Page 3: Investigation of Polymer-Ceramic Nanoparticles Composite Films for Use in the Capacitive Storage of Electrical Energy Terry Stufflebeam Mentor: Dr. Randy.

An Increasingly Viable Option

• High energy capacitors• Ultra-long life; can be charged millions of times• Low impact on the environment

Page 4: Investigation of Polymer-Ceramic Nanoparticles Composite Films for Use in the Capacitive Storage of Electrical Energy Terry Stufflebeam Mentor: Dr. Randy.

How Capacitors Work

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Fabricating the Capacitors

|1cm|

Page 6: Investigation of Polymer-Ceramic Nanoparticles Composite Films for Use in the Capacitive Storage of Electrical Energy Terry Stufflebeam Mentor: Dr. Randy.
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Capacitance Measurements

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Breakdown Voltage

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Measuring the Breakdown Voltage

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Capacitance (in nF)

Dielectric Permittivity

Voltage at Breakdown

(in V)

Breakdown Voltage (in MV/m)

Energy Density (in J/cc)

36 12 25 102 1.6

Capacitor Data

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Acknowledgments

• Dr. Randy Dillingham• Joel Iwagoshi• Crystal Ewen