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用于可拉伸透明电极的石墨烯/银纳米线/石墨烯三明治复合材料及其断裂机制。

Graphene/Silver Nanowires/Graphene Sandwich Composite for Stretchable Transparent Electrodes and Its Fracture Mechanism.

作者信息

Huang Chi-Hsien, Wu Hong-Cing, Chen Bo-Feng, Li Yen-Cheng

机构信息

Department of Materials Engineering, Ming Chi University of Technology, New Taipei City 24301, Taiwan.

Material and Chemical Research Laboratories, Industrial Technology Research Institute, Hsinchu 30011, Taiwan.

出版信息

Micromachines (Basel). 2021 May 2;12(5):512. doi: 10.3390/mi12050512.

Abstract

Polycrystalline graphene grown by chemical vapor deposition (CVD) is characterized by line defects and disruptions at the grain boundaries and nucleation sites. This adversely affects the stretchability and conductivity of graphene, which limits its applications in the field of flexible, stretchable, and transparent electrodes. We demonstrate a composite electrode comprised of a graphene/silver nanowires (AgNWs)/graphene sandwich structure on a polydimethylsiloxane substrate to overcome this limitation. The sandwich structure exhibits high transparency (>90%) and excellent conductivity improvement of the graphene layers. The use of AgNWs significantly suppresses the conductivity loss resulting from stretching. The mechanism of the suppression of the conductivity loss was investigated using scanning electron microscopy, atomic force microscopy, and lateral force microscopy. The results suggest that the high surface friction of the sandwich structure causes a sliding effect between the graphene layers would produce low crack or hole formation to maintain the conductivity. In addition to acting as conductive layers, the top and bottom graphene layers can also protect the AgNWs from oxidation, thereby enabling maintenance of the electrical performance of the electrodes over a prolonged period. We also confirmed the applicability of the sandwich structure electrode to the human body, such as on the wrist, finger, and elbow.

摘要

通过化学气相沉积(CVD)生长的多晶石墨烯的特征在于晶界和成核位点处的线缺陷和破坏。这对石墨烯的拉伸性和导电性产生不利影响,从而限制了其在柔性、可拉伸和透明电极领域的应用。我们展示了一种在聚二甲基硅氧烷基底上由石墨烯/银纳米线(AgNWs)/石墨烯三明治结构组成的复合电极,以克服这一限制。该三明治结构具有高透明度(>90%),并且石墨烯层的导电性有显著改善。AgNWs的使用显著抑制了拉伸导致的导电性损失。使用扫描电子显微镜、原子力显微镜和侧向力显微镜研究了抑制导电性损失的机制。结果表明,三明治结构的高表面摩擦力会导致石墨烯层之间产生滑动效应,从而产生较少的裂纹或孔洞形成以维持导电性。除了作为导电层外,顶部和底部的石墨烯层还可以保护AgNWs不被氧化,从而使电极的电性能在较长时间内得以保持。我们还证实了三明治结构电极在人体上的适用性,如在手腕、手指和肘部。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e151/8147451/1f7b96eb09ce/micromachines-12-00512-g001.jpg

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