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Directed self-assembly of rhombic carbon nanotube nanomesh films for transparent and stretchable electrodes

机译:用于透明和可拉伸电极的菱形碳纳米管纳米网膜的定向自组装

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摘要

The development of a transparent and stretchable electrode is critical to the realization of stretchable optoelectronic devices. In this study, a template-guided self-assembly is demonstrated for the integration of carbon nanotubes into 2D rhombic nanomesh films, where the deformation of the rhombic structure accommodates the strain, greatly improving the stretchability. In addition, the regular 2D nanomesh patterns greatly reduce the contact resistance and light scattering. Our rhombic carbon nanotube nanomesh films exhibited significantly lower sheet resistance (∼10 times) at a similar optical transmittance (78%), greater stretchability (∼8 times less resistance increase at 30% strain), and better mechanical durability (∼42 times less resistance increase after 500 stretching cycles at a strain of 30%) than those of random-network carbon nanotube films. © The Royal Society of Chemistry
机译:透明可拉伸电极的发展对于实现可拉伸光电器件至关重要。在这项研究中,演示了模板引导的自组装,用于将碳纳米管整合到2D菱形纳米网膜中,其中菱形结构的变形适应了应变,从而大大提高了可拉伸性。此外,规则的2D纳米网格图案大大降低了接触电阻和光散射。我们的菱形碳纳米管纳米网膜在相似的透光率(78%)下表现出显着较低的薄层电阻(〜10倍),更大的拉伸性(在30%应变下电阻增加约8倍)和更好的机械耐久性(〜42倍减少)与随机网络的碳纳米管薄膜相比,在30%的应变下经过500次拉伸循环后,电阻增加。 ©皇家化学学会

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