Ultrahigh energy density and high thermal stability in novel bilayer-structured nanocomposites with surface-decorated TiO2@BaTiO3 nanoparticles

Author:

Din Zia Ud,Marwat Mohsin Ali,Humayun Muhammad,Zhang Haibo,Xie Bing,Khan Sajid Ullah,Khan Muhammad Fawad,Adam Kanwar Muhammad,Abdullah Syed,Ghazanfar Esha

Publisher

Elsevier BV

Subject

Electrical and Electronic Engineering,Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment

Reference65 articles.

1. Dielectric and energy storage properties of all-organic sandwich-structured films used for high-temperature film capacitors;Feng;Mater. Today Energy,2022

2. High-temperature energy storage polyimide dielectric materials: polymer multiple-structure design;Zha;Mater. Today Energy,2023

3. Excellent energy storage performance of polyetherimide filled by oriented nanofibers with optimized diameters;Chi;Mater. Today Energy,2020

4. Improved energy storage performance of polyimide nanocomposites by constructing the meso- and macroscopic interfaces;Ji;Mater. Today Energy,2023

5. Improvement of high-temperature energy storage performance in polymer dielectrics by nanofillers with defect spinel structure;Fu;Mater. Today Energy,2022

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