首页> 外文会议>International Conference on Functional Materials and Chemical Engineering >Synthesis, morphological, electromechanical characterization of (CaMgFex)Fe_(1-x)Ti3O_(12-δ)/PDMS nanocomposite thin films for energy storage application
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Synthesis, morphological, electromechanical characterization of (CaMgFex)Fe_(1-x)Ti3O_(12-δ)/PDMS nanocomposite thin films for energy storage application

机译:(CAMGFEX)FE_(1-X)TI3O_(12-δ)/ PDMS纳米复合薄膜的合成,形态学,机电表征,用于储能施加

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At the present time, flexible and stretchable electronics has intended to use the new cutting-edge technologies for advanced electronic application. Currently, Polymers are being employed for such applications but they are not effective due to their low dielectric constant. To enhance the dielectric properties of polymer for energy storage application, it is necessary to add ceramic material of high dielectric constant to synthesize a polymer-ceramic composite. Therefore, a novel attempt has been made to enhance the dielectric properties of the Polydimethylsiloxane (PDMS) polymer by adding (CaMgFex)Fe_(1-x)Ti3O_(12-δ) (090%), which can make it a potential material for advanced flexible electronic devices, energy storage and biomedical applications.
机译:目前,柔性且可伸缩的电子设备旨在使用新的尖端技术进行高级电子应用。目前,使用聚合物用于这些应用,但由于它们的低介电常数,它们无效。为了增强聚合物的介电性能以进行储能施加,需要添加高介电常数的陶瓷材料以合成聚合物 - 陶瓷复合材料。因此,一种新的已经尝试通过添加(CaMgFex)Fe_(1-X)Ti3O_(12-δ)(0 90% ),它可以使其成为先进的柔性电子设备,能量存储和生物医学应用的潜在材料。

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