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突破聚硅氧烷中介电常数的界限:极性偶极修饰造就非晶态热释电聚合物。

Pushing the boundaries of dielectric permittivity in polysiloxanes: polar dipole modifications enable amorphous pyroelectric polymers.

作者信息

Danner Patrick M, Raman Venkatesan Thulasinath, von Szczepanski Johannes, Owusu Francis, Opris Dorina M

机构信息

Swiss Federal Laboratories for Materials Science and Technology - Empa Laboratory for Functional Polymers, Ueberlandstr. 129, Duebendorf, CH-8600, Switzerland.

Department of Materials, ETH Zurich, Vladimir-Prelog-Weg 5, Zurich, CH-8093, Switzerland.

出版信息

Mater Horiz. 2025 May 2. doi: 10.1039/d5mh00234f.

Abstract

The main drawback of polymers in a wide range of soft electrical applications is their low dielectric permittivity. The chemical modification of polymers with organic dipoles has been a successful strategy to increase their dielectric permittivity. However, what is the maximum achievable dielectric permittivity by this method? We present four novel polysiloxanes with relative permittivities ranging from 23 to 31 at room temperature (RT), reaching 34 at 40 °C. These are the highest dielectric permittivity values reported for any amorphous filler-free elastomer. Additionally, we derive a universal guiding principle in designing future elastomers, with an ideal trade-off between elasticity and permittivity at an operating temperature of + 60 °C. We further explore the resulting composites with SiO and TiO and show that two glass transitions (s) occur due to the interfacial layer and the bulk phase. The two phases show distinct dielectric behavior, which we demonstrate as useful in achieving pyroelectric materials. The materials exhibit the highest reported pyroelectricity of any crystal-free, fully amorphous polymer with a stable quasi-static pyroelectric coefficient of 3.4 μC m K at 30 ± 0.5 °C.

摘要

聚合物在广泛的软电应用中的主要缺点是其低介电常数。用有机偶极子对聚合物进行化学改性是提高其介电常数的一种成功策略。然而,通过这种方法可实现的最大介电常数是多少呢?我们展示了四种新型聚硅氧烷,其室温下的相对介电常数在23至31之间,40℃时达到34。这些是任何无定形无填料弹性体所报道的最高介电常数数值。此外,我们推导了设计未来弹性体的通用指导原则,即在60℃的工作温度下,弹性和介电常数之间实现理想的权衡。我们进一步研究了由此得到的与SiO和TiO的复合材料,并表明由于界面层和本体相出现了两个玻璃化转变。这两个相表现出不同的介电行为,我们证明这对于实现热电材料是有用的。这些材料展现出任何无晶体、完全无定形聚合物所报道的最高热电性,在30±0.5℃时具有3.4 μC m² K⁻¹的稳定准静态热电系数。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8ec3/12047071/11562df7589c/d5mh00234f-f1.jpg

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