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Enhanced Triboelectric Performance of Modified PDMS Nanocomposite Multilayered Nanogenerators

机译:改性PDMS纳米复合材料多层纳米能器的摩擦电性能增强

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摘要

Recently, triboelectric nanogenerators (TENGs) have been widely utilized to address the energy demand of portable electronic devices by harvesting electrical energy from human activities or immediate surroundings. To increase the surface charge and surface area of negative TENGs, previous studies suggested several approaches such as micro-patterned arrays, porous structures, multilayer alignment, ion injections, ground systems and mixing of high dielectric constant materials. However, the preparation processes of these nanocomposite TENGs have been found to be complex and expensive. In this work, we report a simple, efficient and inexpensive modification of poly(dimethylsiloxane) (PDMS) using graphene nanoplatelets (GNPs) fillers and a Na2CO3 template. This GNP-PDMS was chemically bonded using 3-aminopropylethoxysilane (APTES) as a linker with an electrode multilayer made by layer-by-layer deposition of polyvinyl alcohol (PVA) and poly(4-styrene-sulfonic acid) (PSS)-stabilized GNP (denoted as [PVA/GNP-PSS]n). A 33 wt.% Na2CO3 and 0.5 wt.% of GNP into a PDMS-based TENG gives an open-circuit voltage and short-circuit current density of up to ~270.2 V and ~0.44 μA/cm2, which are ~8.7 and ~3.5 times higher than those of the pristine PDMS, respectively. The higher output performance is due to (1) the improved surface charge density, 54.49 μC/m2, from oxygen functional moieties of GNP, (2) high surface roughness of the composite film, ~0.399 μm, which also increased the effective contact area, and (3) reduced charge leakage from chemical bonding of GNP-PDMS and [PVA/GNP-PSS]3 via APTES. The proposed TENG fabrication process could be useful for the development of other high-performance TENGs.
机译:最近,摩擦电纳米电磁器(Tengs)已被广泛利用,通过收获来自人类活动或即时周围环境的电能来解决便携式电子设备的能源需求。为了增加负龄的表面电荷和表面积,之前的研究表明了几种方法,例如微图案阵列,多孔结构,多层对准,离子注射,地面系统和高介电常数材料的混合。然而,已发现这些纳米复合材料的制备方法是复杂且昂贵的。在这项工作中,我们通过石墨烯纳米片(GNPS)填料和Na 2 CO 3模板来报告对聚(二甲基硅氧烷)(PDMS)的简单,高效且廉价的修饰。使用3-氨基丙基乙氧基硅烷(Aptes)作为接头化学键合,作为通过层替代聚乙烯醇(PVA)和聚(4-苯乙烯 - 磺酸)(PSS)的电极多层制备的电极多层的接头GNP(表示为[PVA / GNP-PSS] N)。 33重量%。%Na2CO3和0.5重量%的GNP进入基于PDMS的滕,给出了高达约270.2V和〜0.44μA/ cm2的开路电压和短路电流密度,这是〜8.7和~~分别比原始PDM高3.5倍。较高的输出性能是由于(1)所改善的表面电荷密度,54.49μC/ m 2,来自GNP的氧官能部分,(2)复合膜的高表面粗糙度,〜0.399μm,也增加了有效接触面积(3)通过Aptes减少GNP-PDMS和[PVA / GNP-PSS] 3的化学键粘合的电荷泄漏。拟议的腾腾制造过程可用于发展其他高性能腾冲。

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