Adeli Yeerlan, Raman Venkatesan Thulasinath, Mezzenga Raffaele, Nüesch Frank A, Opris Dorina M
Laboratory for Functional Polymers, Swiss Federal Laboratories for Materials Science and Technology Empa, Ueberlandstr. 129, CH-8600 Dübendorf, Switzerland.
Institute of Chemical Sciences and Engineering, Ecole Polytechnique Federale de Lausanne, EPFL, Station 6, CH-1015 Lausanne, Switzerland.
ACS Appl Polym Mater. 2024 Apr 22;6(9):4999-5010. doi: 10.1021/acsapm.3c03053. eCollection 2024 May 10.
Cross-linked bottlebrush polymers received significant attention as dielectrics in transducers due to their unique softness and strain stiffening caused by their structure. Despite some progress, there is still a great challenge in increasing their dielectric permittivity beyond 3.5 and cross-linking them to defect-free ultrathin films efficiently under ambient conditions. Here, we report the synthesis of bottlebrush copolymers based on ring-opening metathesis polymerization (ROMP) starting from a 5-norbornene-2-carbonitrile and a norbornene modified with a poly(dimethylsiloxane) (PDMS) chain as a macromonomer. The resulting copolymer was subjected to a postpolymerization modification, whereby the double bonds were used both for functionalization with thiopropionitrile and subsequent cross-linking via a thiol-ene reaction. The solutions of both bottlebrush copolymers formed free-standing elastic films by simple casting. DMA and broadband impedance spectroscopy revealed two glass transition temperatures uncommon for a random copolymer. The self-segregation of the nonpolar PDMS chains and the polynorbornane backbone is responsible for this and is supported by the interfacial polarization observed in broadband impedance spectroscopy and the scattering peaks observed in small-angle X-ray scattering (SAXS). Additionally, the modified bottlebrush copolymer was cross-linked to an elastomer that exhibits increased dielectric permittivity and good mechanical properties with significant strain stiffening, an attractive property of dielectric elastomer generators. It has a relative permittivity of 5.24, strain at break of 290%, elastic modulus at 10% strain of 380 kPa, a breakdown field of 62 V μm, and a small actuation of 5% at high electric fields of 48.5 V μm. All of these characteristics are attractive for dielectric elastomer generator applications. The current work is a milestone in designing functional elastomers based on bottlebrush polymers for transducer applications.
交联刷状聚合物因其独特的柔软性以及由其结构引起的应变硬化,作为换能器中的电介质受到了广泛关注。尽管取得了一些进展,但要将其介电常数提高到3.5以上,并在环境条件下有效地将它们交联成无缺陷的超薄膜,仍然面临巨大挑战。在此,我们报道了基于开环易位聚合(ROMP)合成刷状共聚物,起始原料为5-降冰片烯-2-腈和用聚(二甲基硅氧烷)(PDMS)链作为大分子单体改性的降冰片烯。所得共聚物进行了后聚合改性,其中双键既用于硫代丙腈官能化,又用于通过硫醇-烯反应进行后续交联。两种刷状共聚物的溶液通过简单浇铸形成独立的弹性膜。动态机械分析(DMA)和宽带阻抗谱揭示了无规共聚物中不常见的两个玻璃化转变温度。非极性PDMS链和聚降冰片烷主链的自分离是造成这种情况的原因,宽带阻抗谱中观察到的界面极化以及小角X射线散射(SAXS)中观察到的散射峰对此提供了支持。此外,改性刷状共聚物交联成一种弹性体,该弹性体表现出提高的介电常数和良好的机械性能,具有显著的应变硬化,这是介电弹性体发电机的一个吸引人的特性。它的相对介电常数为5.24,断裂应变290%,10%应变下的弹性模量为380 kPa,击穿场强为62 V/μm,在48.5 V/μm的高电场下有5%的小驱动。所有这些特性对于介电弹性体发电机应用都很有吸引力。当前的工作是基于刷状聚合物设计用于换能器应用的功能弹性体的一个里程碑。