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A Scalable Route to Nanoporous Large-Area Atomically Thin Graphene Membranes by Roll-to-Roll Chemical Vapor Deposition and Polymer Support Casting

机译:通过卷到卷化学气相沉积和聚合物支撑铸件到纳米多孔大面积原子薄石墨烯膜的可扩展路线

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摘要

Scalable, cost-effective synthesis and integration of graphene is imperative to realize large-area applications such as nanoporous atomically thin membranes (NATMs). Here, we report a scalable route to the production of NATMs via high-speed, continuous synthesis of large-area graphene by roll-to-roll chemical vapor deposition (CVD), combined with casting of a hierarchically porous polymer support. To begin, we designed and built a two zone roll-to roll graphene CVD reactor, which sequentially exposes the moving foil substrate to annealing and growth atmospheres, with a sharp, isothermal transition between the zones. The configurational flexibility of the reactor design allows for a detailed evaluation of key parameters affecting graphene quality and trade-offs to be considered for high-rate roll-to-roll graphene manufacturing. With this system, we achieve synthesis of uniform high-quality monolayer graphene (I-D/I-G 0.065) at speeds = 5 cm/min. NATMs fabricated from the optimized graphene, via polymer casting and postprocessing, show size-selective molecular transport with performance comparable to that of membranes made from conventionally synthesized graphene. Therefore, this work establishes the feasibility of a scalable manufacturing process of NATMs, for applications including protein desalting and small-molecule separations.
机译:可扩展,经济有效的合成和石墨烯的整合是实现大面积应用,例如纳米多孔原子薄膜(NATMS)。这里,我们通过卷到卷化学气相沉积(CVD)来通过高速,连续合成大面积石墨烯的高速合成,与浇铸的浇铸浇铸,从而通过高速,连续合成大区域石墨烯的生产途径。首先,我们设计并构建了一个两个区域卷卷石墨烯CVD反应器,其顺序地将移动的箔基底暴露于退火和生长气氛,在区域之间具有尖锐的等温转换。反应器设计的配置灵活性允许对影响石墨烯质量的关键参数进行详细评估,以考虑高速轧制石墨烯制造。通过该系统,我们在速度下达到均匀高质量的单层石墨烯(I-D / I-G <0.065)的合成= 5cm / min。通过聚合物铸造和后处理由优化的石墨烯制造的NATMS显示尺寸选择性分子运输,其性能与由常规合成的石墨烯制成的膜相当。因此,这项工作确定了Natms可扩展制造过程的可行性,用于包括蛋白质脱盐和小分子分离的应用。

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