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通过极性刚性/柔性侧链构建新型高性能偶极玻璃聚合物电介质。

Constructing Novel High-Performance Dipolar Glass Polymer Dielectrics by Polar Rigid/Flexible Side Chains.

机构信息

Key Laboratory of Polymeric Materials and Application Technology of Hunan Province, College of Chemistry, Xiangtan University, Xiangtan 411105, Hunan Province, China.

State Key Laboratory of Powder Metallurgy, Central South University, Changsha, Hunan 410083, China.

出版信息

ACS Appl Mater Interfaces. 2023 May 24;15(20):24470-24482. doi: 10.1021/acsami.3c02653. Epub 2023 May 12.

Abstract

Developing new polymer dielectrics with superior dielectric and energy storage properties is urgent to meet the demand for electronic devices in the field of microminiaturization or harsh environments. In this paper, two dipolar glass polymers based on polynorbornene main chain and flexible/rigid cyano side chain were synthesized by ring opening metathesis polymerization method: polymer PCEMT with flexible side chains and polymer PCPMT with rigid side chains. The backbone is built from two rigid five-membered rings, which not only avoids the narrow band gap caused by π-π conjugation of traditional aromatic main chains, but also maintains high thermal stability and high glass transition temperature (). The introduced polar cyano groups on the side chain gave high dielectric constants (ε) for both polymers, where the ε of PCEMT and PCPMT reached 7.9 and 4.6 at room temperature and 1 kHz, respectively. Due to high polarization and high breakdown strength, the PCPMT obtains a maximum discharge energy density () of 4.47 J/cm at room temperature, which is 1.61 and 1.57 times of biaxially oriented polypropylene and polyimide (Kapton). The supernal of 229 °C makes the energy storage performance of PCPMT almost unaffected at 100 °C. The charge-discharge efficiency (η) always keeps over 90% and an of 5.2 J/cm at 480 MV/m is achieved, which is much better than Kapton ( = 1.77 J/cm, η = 42.5%) under the same conditions. This work provides a new idea for preparing the high-performance polymer dielectrics via introducing rigid polar side chains.

摘要

开发具有优越介电和储能性能的新型聚合物电介质对于满足微电子化或恶劣环境领域中电子设备的需求至关重要。本文通过开环复分解聚合方法合成了两种基于聚降冰片烯主链和柔性/刚性氰基侧链的偶极玻璃聚合物:柔性侧链的聚合物 PCEMT 和刚性侧链的聚合物 PCPMT。主链由两个刚性的五元环构建,这不仅避免了传统芳香主链的π-π共轭引起的窄带隙,而且保持了高的热稳定性和高玻璃化转变温度()。侧链上引入的极性氰基基团赋予了两种聚合物高的介电常数(ε),其中 PCEMT 和 PCPMT 的ε 在室温下和 1 kHz 时分别达到 7.9 和 4.6。由于高极化和高击穿强度,PCPMT 在室温下获得了 4.47 J/cm 的最大放电能量密度(),分别是双向拉伸聚丙烯和聚酰亚胺(Kapton)的 1.61 倍和 1.57 倍。229°C 的超高温使 PCPMT 的储能性能在 100°C 时几乎不受影响。充放电效率(η)始终保持在 90%以上,在 480 MV/m 时实现了 5.2 J/cm 的,在相同条件下优于 Kapton(=1.77 J/cm,η=42.5%)。这项工作为通过引入刚性极性侧链制备高性能聚合物电介质提供了新的思路。

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