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首页> 外文期刊>Science Advances >Unprecedented dipole alignment in α-phase nylon-11 nanowires for high-performance energy-harvesting applications
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Unprecedented dipole alignment in α-phase nylon-11 nanowires for high-performance energy-harvesting applications

机译:α相尼龙-11纳米线中前所未有的偶极对准,用于高性能能量收集应用

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Dipole alignment in ferroelectric polymers is routinely exploited for applications in charge-based applications. Here, we present the first experimental realization of ideally ordered dipole alignment in α-phase nylon-11 nanowires. This is an unprecedented discovery as dipole alignment is typically only ever achieved in ferroelectric polymers using an applied electric field, whereas here, we achieve dipole alignment in as-fabricated nanowires of ‘non-ferroelectric’ α-phase nylon-11, an overlooked polymorph of nylon proposed 30 years ago but never practically realized. We show that the strong hydrogen bonding in α-phase nylon-11 serves to enhance the molecular ordering, resulting in exceptional intensity and thermal stability of surface potential. This discovery has profound implications for the field of triboelectric energy harvesting, as the presence of an enhanced surface potential leads to higher mechanical energy harvesting performance. Our approach therefore paves the way towards achieving robust, high-performance mechanical energy harvesters based on this unusual ordered phase of nylon-11.
机译:铁电聚合物中的偶极对准是常规的用于基于电荷的应用中的应用。这里,我们介绍了在α相尼龙-11纳米线中理想有序的偶极对准的第一次实验实现。这是一个前所未有的发现,因为偶极对准通常仅使用施加的电场在铁电聚合物中实现,而在此,我们在忽略的多晶型物的“非铁电”α相尼龙-11的制造纳米线中实现了偶极对准30年前提出的尼龙但从未实际实现过。我们表明,α-相尼龙-11中的强氢键合用于增强分子序,导致表面电位的特殊强度和热稳定性。这一发现对摩擦电能收集领域具有深远的影响,因为增强的表面电位的存在导致更高的机械能量收集性能。因此,我们的方法旨在基于尼龙-11的这种不寻常的有序相实现稳健的高性能机械能收割机。

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