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Realization of Large-Area Wrinkle-Free Monolayer Graphene Films Transferred to Functional Substrates

机译:大面积无皱纹单层石墨烯膜转移到功能性基材上的实现

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摘要

Structural inhomogeneities, such as the wrinkles and ripples within a graphene film after transferring the free-standing graphene layer to a functional substrate, degrade the physical and electrical properties of the corresponding electronic devices. Here, we introduced titanium as a superior adhesion layer for fabricating wrinkle-free graphene films that is highly applicable to flexible and transparent electronic devices. The Ti layer does not influence the electronic performance of the functional substrates. Experimental and theoretical investigations confirm that the strong chemical interactions between Ti and any oxygen atoms unintentionally introduced on/within the graphene are responsible for forming the clean, defect-free graphene layer. Our results accelerate the practical application of graphene-related electronic devices with enhanced functionality. The large-area monolayer graphenes were prepared by a simple attachment of the Ti layer with the multi-layer wrinkle-free graphene films. For the first time, the graphene films were addressed for applications of superior bottom electrode for flexible capacitors instead of the novel metals.
机译:在将自支撑的石墨烯层转移到功能性基板后,结构异质性(例如石墨烯薄膜内的皱纹和波纹)会降低相应电子设备的物理和电气性能。在这里,我们介绍了钛作为制造无皱纹石墨烯薄膜的高级粘合层,该钛层非常适用于柔性和透明电子设备。 Ti层不影响功能性基板的电子性能。实验和理论研究证实,Ti与任何无意引入到石墨烯上/内部的氧原子之间的强化学相互作用是形成干净,无缺陷的石墨烯层的原因。我们的结果以增强的功能加速了石墨烯相关电子设备的实际应用。大面积单层石墨烯是通过将Ti层与多层无皱纹石墨烯膜简单连接而制备的。石墨烯薄膜首次被提出用于柔性电容器的高级下电极而不是新型金属的应用。

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