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Novel Optical Technique for 2D Graphene Reduction

机译:用于2D石墨烯的新型光学技术

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Engineering a low-cost graphene- based opto-electronic device is a challenging task to accomplish via a single-step fabrication process. Recently scientists have started focusing on the development and use of a laser-based method for efficient reduction of graphene oxide (GO) films at low-temperature. Our proposed technique utilizes a laser beam for non thermal reduction of solution processed GO layers onto film substrates. Compared to other reduction techniques, it is a single-step, facile, time consuming, non-contact operation, environment-friendly, patternable, low cost, and can be performed at room temperature in ambient atmosphere without affecting the integrity of either the physical properties or the lattice of graphene. Laser scribed reduced graphene (LSRG) is shown to be successfully produced and selectively patterned from the direct laser irradiation of graphite oxide films under ambient conditions. In addition, by varying the laser's intensity, power, and irradiation treatments, the electrical properties of LSRG can be accurately attune over five orders of magnitude of conductivity. Feature has proven difficulty with other methods. This credible, scalable approach is mask-free, does not require certain expensive chemical reduction agents, and can be performed at ambient conditions starting from aqueous graphene oxide flakes. The non thermal nature of this method combined with its scalability and simplicity, makes it very attractive for the manufacturing of future generation large-volume graphene-based opto/electronics.
机译:工程,基于低成本的石墨烯 - 光电电子设备是一种具有挑战性的任务,可以通过单步制造过程来实现。最近,科学家已经开始专注于开发和使用基于激光的方法,以便在低温下有效地减少石墨烯氧化物(GO)膜。我们所提出的技术利用激光束,用于将加工的溶液的不热还原到薄膜基板上。与其他减少技术相比,它是一种单步,容易,耗时,非接触操作,环保,可图案,低成本,并且可以在室温下在环境大气中进行,而不会影响物理的完整性石墨烯的性质或晶格。示出了激光划线的石墨烯(LSRG)被示出为在环境条件下从石墨氧化物膜的直接激光照射中成功制造和选择性地图案化。另外,通过改变激光的强度,功率和照射处理,LSRG的电性能可以精确地占据五个电导率级别。特征已被证明是困难的其他方法。这种可信,可扩展的方法是无掩盖的,不需要某些昂贵的化学还原剂,并且可以在从石墨烯氧化物薄片开始的环境条件下进行。该方法的非热性质与其可扩展性和简单性相结合,使其对未来一代大型石墨烯的光/电子产品制造非常有吸引力。

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