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Laser-assisted simultaneous transfer and patterning of vertically aligned carbon nanotube arrays on polymer substrates for flexible devices

机译:用于柔性设备的聚合物衬底上的垂直对齐的碳纳米管阵列的激光辅助同时转移和图案化

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摘要

We demonstrate a laser-assisted dry transfer technique for assembling patterns of vertically aligned carbon nanotube arrays on a flexible polymeric substrate. A laser beam is applied to the interface of a nanotube array and a polycarbonate sheet in contact with one another. The absorbed laser heat promotes nanotube adhesion to the polymer in the irradiated regions and enables selective pattern transfer. A combination of the thermal transfer mechanism with rapid direct writing capability of focused laser beam irradiation allows us to achieve simultaneous material transfer and direct micropatterning in a single processing step. Furthermore, we demonstrate that malleability of the nanotube arrays transferred onto a flexible substrate enables post-transfer tailoring of electric conductance by collapsing the aligned nanotubes in different directions. This work suggests that the laser-assisted transfer technique provides an efficient route to using vertically aligned nanotubes as conductive elements in flexible device applications.
机译:我们演示了用于在柔性聚合物基板上组装垂直对齐的碳纳米管阵列的图案的激光辅助干转移技术。激光束被施加到彼此接触的纳米管阵列和聚碳酸酯片的界面。吸收的激光热促进纳米管粘附到被照射区域中的聚合物,并使选择性的图案转移成为可能。热传递机制与聚焦激光束辐照的快速直接写入功能相结合,使我们能够在单个处理步骤中实现同时的材料传递和直接微图案化。此外,我们证明了将纳米管阵列转移到柔性基板上的可延展性能够通过使排列的纳米管在不同方向上塌陷来进行电导转移后的剪裁。这项工作表明,激光辅助转移技术为在柔性设备应用中使用垂直排列的纳米管作为导电元件提供了一条有效途径。

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