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首页> 外文期刊>ACS applied materials & interfaces >Dielectric Elastomer Generator with Improved Energy Density and Conversion Efficiency Based on Polyurethane Composites
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Dielectric Elastomer Generator with Improved Energy Density and Conversion Efficiency Based on Polyurethane Composites

机译:基于聚氨酯复合材料的能量密度和转化效率提高的介电弹性体发生器

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Dielectric elastomer generators (DEGs), which follow the physics of variable capacitors and harvest electric energy from mechanical work, have attracted intensive attention over the past decade. The lack of ideal dielectric elastomers, after nearly two decades of research, has become the bottleneck for DEGs' practical applications. Here, we fabricated a series of polyurethane-based ternary composites and estimated their potential as DEGs to harvest electric energy for the first time. Thermoplastic polyurethane (PU) with high relative permittivity (similar to 8) was chosen as the elastic matrix. Barium titanate (BT) nanoparticles and dibutyl phthalate (DBP) plasticizers, which were selected to improve the permittivity and mechanical properties, respectively, were blended into the PU matrix. As compared to pristine PU, the resultant ternary composite films fabricated through a solution casting approach showed enhanced permittivity, remarkably reduced elastic modulus, and relatively good electrical breakdown strength, dielectric loss, and strain at break. Most importantly, the harvested energy density of PU was significantly enhanced when blended with BT and DBP. A composite film containing 25 phr of BT and 60 phr of DBP with the harvested energy density of 1.71 mJ/cm(3) was achieved, which is about 4 times greater than that of pure PU and 8 times greater than that of VHB adhesives. Remarkably improved conversion efficiency of mechano-electric energy was also obtained via cofilling BT and DBP into PU. The results shown in this work strongly suggest compositing is a very promising way to provide better dielectric elastomer candidates for forthcoming practical DEGs.
机译:介电弹性体发生器(DEGS),其遵循可变电容器的物理和从机械工作中收获电能,在过去十年中引起了密集的关注。经过近二十年的研究之后,缺乏理想的介电弹性体已成为DEGS实际应用的瓶颈。在这里,我们制造了一系列基于聚氨酯的三元复合材料,并估计它们第一次收获电能的潜力。选择具有高相对介电常数(类似于8)的热塑性聚氨酯(PU)作为弹性基质。钛酸钡(BT)纳米颗粒和邻苯二甲酸二丁酯(DBP)增塑剂分别选择以改善介电常数和机械性能,将其混合到PU基质中。与原始PU相比,通过溶液铸造方法制造的所得三元复合膜显示出增强的介电常数,显着降低的弹性模量和相对良好的电击穿强度,介电损耗和断裂菌株。最重要的是,与BT和DBP混合时,PU的收获能量密度显着提高。达到含有25phr的BT和60php的复合膜,具有收获的能量密度为1.71mJ / cm(3),其比纯PU大约大约4倍,而不是VHB粘合剂的8倍。通过Cofilling BT和DBP进入PU,也可以显着提高机械电能的转换效率。这项工作中所示的结果强烈建议合成是一种非常有希望的方式,为即将到来的实用含量提供更好的介电弹性体候选者。

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