Scalable Dual In Situ Synthesis of Polyester Nanocomposites for High-Energy Storage

Fei-Yan Luo, Yan-Tong Li, Jia-Yu Zhang, Li He,Jia-Le Li,Nan Sun,Gui-Lin Li, Yong Jiang, Ke Zhou,Qian-Qian Liang, Lei Guo, Hong-Yuan Wei,Xian-Hua Wei,Yuan-Lin Zhou,Jinkai Yuan,Quan-Ping Zhang

SMALL(2024)

引用 0|浏览12
暂无评分
摘要
Incorporating ultralow loading of nanoparticles into polymers has realized increases in dielectric constant and breakdown strength for excellent energy storage. However, there are still a series of tough issues to be dealt with, such as organic solvent uses, which face enormous challenges in scalable preparation. Here, a new strategy of dual in situ synthesis is proposed, namely polymerization of polyethylene terephthalate (PET) synchronizes with growth of calcium borate nanoparticles, making polyester nanocomposites from monomers directly. Importantly, this route is free of organic solvents and surface modification of nanoparticles, which is readily accessible to scalable synthesis of polyester nanocomposites. Meanwhile, uniform dispersion of as ultralow as 0.1 wt% nanoparticles and intense bonding at interfaces have been observed. Furthermore, the PET-based nanocomposite displays obvious increases in both dielectric constant and breakdown strength as compared to the neat PET. Its maximum discharged energy density reaches 15 J cm-3 at 690 MV m-1 and power density attains 218 MW cm-3 under 150 Omega resistance at 300 MV m-1, which is far superior to the current dielectric polymers that can be produced at large scales. This work presents a scalable, safe, low-cost, and environment-friendly route toward polymer nanocomposites with superior capacitive performance. A dual in situ synthesis (polymer polymerization synchronizing with inorganic filler growth) is proposed for scalable synthesis of polyester nanocomposites from monomers directly. The safe, low-cost, and environment-friendly route carves a path to explore polymer nanocomposites with superior energy storage and discharge performance. image
更多
查看译文
关键词
dielectric energy storage,dual in situ synthesis,polyester nanocomposites
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要