Phillips Jonathan, Roman Alexander
Mechanical and Aerospace Engineering, Naval Postgraduate School, Monterey, CA 93950, USA.
Materials (Basel). 2019 Jun 25;12(12):2033. doi: 10.3390/ma12122033.
As predicted by the theory of super dielectric materials, simple tests demonstrate that dielectric material on the outside of a parallel plate capacitor dramatically increases capacitance, energy density, and power density. Simple parallel plate capacitors with only ambient air between the plates behaved as per standard theory. Once the same capacitor was partially submerged in deionized water (DI), or DI with low dissolved NaCl concentrations, still with only ambient air between the electrodes, the capacitance, energy density, and power density, at low frequency, increased by more than seven orders of magnitude. Notably, conventional theory precludes the possibility that material outside the volume between the plates will in any fashion impact capacitive behavior.
正如超介电材料理论所预测的那样,简单的测试表明,平行板电容器外部的介电材料会显著提高电容、能量密度和功率密度。极板之间仅有环境空气的简单平行板电容器的行为符合标准理论。一旦将同一个电容器部分浸入去离子水(DI)或溶解有低浓度氯化钠的DI中,电极之间仍然只有环境空气,在低频下,电容、能量密度和功率密度增加了七个多数量级。值得注意的是,传统理论排除了极板之间空间外部的材料会以任何方式影响电容行为的可能性。