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“Self-Peel-Off” Transfer Produces Ultrathin Polyvinylidene-Fluoride-Based Flexible Nanodevices

机译:“自剥离”转移产生了基于聚偏二氟乙烯的超薄柔性纳米器件

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摘要

Here, a new strategy, self-peel-off transfer, for the preparation of ultrathin flexible nanodevices made from polyvinylidene-fluoride (PVDF) is reported. In this process, a functional pattern of nanoparticles is transferred via peeling from a temporary substrate to the final PVDF film. This peeling process takes advantage of the differences in the work of adhesion between the various layers (the PVDF layer, the nanoparticle-pattern layer and the substrate layer) and of the high stresses generated by the differential thermal expansion of the layers. The work of adhesion is mainly guided by the basic physical/chemical properties of these layers and is highly sensitive to variations in temperature and moisture in the environment. The peeling technique is tested on a variety of PVDF-based functional films using gold/palladium nanoparticles, carbon nanotubes, graphene oxide, and lithium iron phosphate. Several PVDF-based flexible nanodevices are prepared, including a single-sided wireless flexible humidity sensor in which PVDF is used as the substrate and a double-sided flexible capacitor in which PVDF is used as the ferroelectric layer and the carrier layer. Results show that the nanodevices perform with high repeatability and stability. Self-peel-off transfer is a viable preparation strategy for the design and fabrication of flexible, ultrathin, and light-weight nanodevices.
机译:在这里,报道了一种新的策略,自剥离转移,用于制备由聚偏二氟乙烯(PVDF)制成的超薄柔性纳米器件。在此过程中,纳米颗粒的功能图案通过从临时基材剥离到最终的PVDF膜而转移。该剥离过程利用了各层(PVDF层,纳米颗粒图案层和基底层)之间的粘合功的差异以及由层的差异热膨胀产生的高应力的优势。粘合的工作主要由这些层的基本物理/化学特性决定,并且对环境中的温度和湿度变化高度敏感。使用金/钯纳米粒子,碳纳米管,氧化石墨烯和磷酸铁锂,在各种基于PVDF的功能膜上测试了剥离技术。制备了几种基于PVDF的柔性纳米器件,包括单面无线柔性湿度传感器(其中PVDF用作基材)和双面柔性电容器(其中PVDF用作铁电层和载体层)。结果表明,纳米器件具有很高的可重复性和稳定性。自剥离转移是设计,制造柔性,超薄和轻型纳米器件的可行准备策略。

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