使用含碳纳米颗粒墨水的白板笔完全手写柔性电热器件

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC ACS Applied Electronic Materials Pub Date : 2024-06-13 DOI:10.1021/acsaelm.4c00375
Yufei Tian, Maolin Dong, Xin Wang, Yihua Zhou* and Jun Qian*, 
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引用次数: 0

摘要

人们对高性能电热器件(包括电热膜和致动器)的设计提出了更高的要求,这些器件不仅易于制造,而且成本低廉。在此,我们采用一种简单且可扩展的手写技术,用白板笔填充碳水导电墨水,制作了由聚酰亚胺和碳纳米材料制成的柔性电热膜,以及由聚乙烯和碳纳米材料组成的双态致动器。通过在不同基底上绘制迹线形成电路,对雷电二极管的电气性能进行了检验。此外,还将制备的手写器件的性能与丝网印刷器件的性能进行了比较,发现两者的性能相似。制备的电热膜在 10 V 电压下温度可达 122 °C,双态致动器在 5 V 电压下 20 秒内可实现 221° 的可逆形变。这些工作为智能领域和实际应用提供了一种简单、快速的电热器件制造方法。
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Fully Handwritten Flexible Electrothermal Devices Using a Whiteboard Marker Pen with Carbon Nanoparticle Ink

There is a high demand for the design of high-performance electrothermal devices, including electrothermal films and actuators, with easy fabrication and low cost. Herein, flexible electrothermal films made of polyimide and carbon nanomaterials and bimorph actuators consisting of polythene and carbon nanomaterials are fabricated by a handwriting technique with a whiteboard marker pen filled with carbon aqueous conductive ink, which is simple and scalable. The electrical performance was examined through lightning diodes by drawing traces on various substrates to form a circuit. In addition, the performance of prepared handwritten devices was compared to that of screen-printed devices, and it was discovered that their performance was similar. The prepared electrothermal films can reach 122 °C with 10 V, and the bimorph actuator exhibits electrical actuation with reversible deformation of 221° under 5 V voltage within 20 s. Furthermore, a cross pattern composed of four pieces of the actuator was fabricated to demonstrate electrically driven actuation. These works provide a simple and fast method to fabricate electrothermal devices for intelligent fields and practical applications.

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CiteScore
7.20
自引率
4.30%
发文量
567
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