State Key Laboratory of Powder Metallurgy, Central South University, Changsha, 410083, P. R. China.
College of Chemistry and Chemical Engineering, Central South University, Changsha, 410083, P. R. China.
Small. 2023 Jun;19(26):e2300510. doi: 10.1002/smll.202300510. Epub 2023 Mar 16.
It is urgent to develop high-temperature dielectrics with high energy density and high energy efficiency for next-generation capacitor demands. Metal-organic frameworks (MOFs) have been widely used due to their structural diversity and functionally adaptable properties. Doping of metal nodes in MOFs is an effective strategy to change the band gap and band edge positions of the original MOFs, which helps to improve their ability to bind charges as traps. In this work, the incorporation of ultralow loading (<1.5 wt%) of novel bimetallic MOFs (ZIF 8-67) into the polyetherimide (PEI) polymer matrix is exhibited. With the addition of ZIF 8-67, the breakdown strength and energy storage capacity of ZIF 8-67/PEI nanocomposites are significantly improved, especially at high temperatures (200 °C). For example, the energy densitiy of the 0.5 wt% ZIF 8-67/PEI nanocomposite is up to 2.96 J cm , with an efficiency (η) > 90% at 150 °C. At 200 °C, the discharge energy density of 0.25 wt% ZIF 8-67/PEI nanocomposites can still reach 1.84 J cm with a η > 90%, which is nine times higher than that of pure PEI (0.21 J cm ) under the same conditions, and it is the largest improvement compared with the previous reports.
开发具有高能量密度和高能量效率的高温电介质对于下一代电容器的需求至关重要。由于其结构多样性和功能适应性,金属有机骨架(MOFs)得到了广泛的应用。在 MOFs 中掺杂金属节点是改变原始 MOFs 的带隙和能带边缘位置的有效策略,有助于提高其作为陷阱结合电荷的能力。在这项工作中,将新型双金属 MOFs(ZIF-8-67)以超低负载量(<1.5wt%)掺入聚醚酰亚胺(PEI)聚合物基质中。随着 ZIF-8-67 的加入,ZIF-8-67/PEI 纳米复合材料的击穿强度和储能能力得到了显著提高,尤其是在高温(200°C)下。例如,0.5wt% ZIF-8-67/PEI 纳米复合材料的能量密度高达 2.96 J/cm,在 150°C 时效率(η)>90%。在 200°C 下,0.25wt% ZIF-8-67/PEI 纳米复合材料的放电能量密度仍可达到 1.84 J/cm,η>90%,在相同条件下比纯 PEI(0.21 J/cm)高 9 倍,与之前的报道相比有了最大的提高。