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Flexible Indium-Tin Oxide Crystal on Plastic Substrates Supported by Graphene Monolayer

机译:石墨烯单层支撑的塑料基板上的柔性铟锡氧化物晶体

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摘要

Flexible and crystallized indium-tin oxide (ITO) thin films were successfully obtained on plastic polyethylene terephthalate (PET) films with monolayered graphene as a platform. The highly crystalline ITO (c-ITO) was first fabricated on a rigid substrate of graphene on copper foil and it was subsequently transferred onto a PET substrate by a well-established technique. Despite the plasma damage during ITO deposition, the graphene layer effectively acted as a Cu-diffusion barrier. The c-ITO/graphene/ PET electrode with the 60-nm-thick ITO exhibited a reasonable sheet resistance of similar to 45 Omega sq(-1) and a transmittance of similar to 92% at a wavelength of 550 nm. The c-ITO on the monolayered graphene support showed significant enhancement in flexibility compared with the ITO/PET film without graphene because the atomically controlled monolayered graphene acted as a mechanically robust support. The prepared flexible transparent c-ITO/graphene/PET electrode was applied as the anode in a bulk heterojunction polymer solar cell (PSC) to evaluate its performance, which was comparable with that of the commonly used c-ITO/glass electrode. These results represent important progress in the fabrication of flexible transparent electrodes for future optoelectronics applications.
机译:在以单层石墨烯为平台的塑料聚对苯二甲酸乙二酯(PET)薄膜上成功获得了柔性且结晶的铟锡氧化物(ITO)薄膜。首先在铜箔上的石墨烯刚性基板上制造高结晶度ITO(c-ITO),然后通过公认的技术将其转移到PET基板上。尽管在ITO沉积过程中等离子体受到破坏,但石墨烯层仍有效地充当了Cu扩散阻挡层。 ITO厚度为60 nm的c-ITO /石墨烯/ PET电极在550 nm的波长下具有合理的薄层电阻(类似于45Ωsq(-1))和相似的透射率(92%)。与没有石墨烯的ITO / PET膜相比,单层石墨烯载体上的c-ITO表现出显着的柔韧性增强,因为原子控制的单层石墨烯充当了机械坚固的载体。将制备的柔性透明c-ITO /石墨烯/ PET电极用作整体异质结聚合物太阳能电池(PSC)中的阳极,以评估其性能,这与常用的c-ITO /玻璃电极相当。这些结果代表了在用于未来光电应用的柔性透明电极的制造中的重要进展。

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