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Self-organized graphene nanosheets with corrugated, ordered tip structures for high-performance flexible field emission

机译:具有波纹状,有序尖端结构的自组织石墨烯纳米片,可实现高性能的柔性场发射

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摘要

Patterned reduced graphene oxide (rGO) films with vertically aligned tip structures are fabricated by a straightforward self-assembly method. The size, uniformity of the patterns, and alignment of the tips are successfully controlled according to the concentration of a GO/octadecylamine (ODA)-dispersed solution. The surface energy difference between the GO/ODA solution and a self-assembled water droplet is a critical parameter for determining the pattern structure. Numerous rGO nanosheets are formed so as to be vertically aligned with respect to the substrate during film fabrication at GO concentrations below 2.0 g/L. These samples provide high field-emission characteristics. The patterned rGO arrays are highly flexible with preservation of the field emission properties, even at large bending angles. This is attributed to the high crystallinity, emitter density, and good chemical stability of the rGO arrays, as well as the strong interactions between the rGO arrays and the substrate.
机译:通过简单的自组装方法可以制造出具有垂直排列的尖端结构的图案化还原氧化石墨烯(rGO)膜。根据GO /十八烷基胺(ODA)分散溶液的浓度,可以成功控制图案的大小,均匀性和尖端的对齐方式。 GO / ODA溶液和自组装水滴之间的表面能差是确定图案结构的关键参数。在GO浓度低于2.0 g / L的薄膜制造过程中,形成了许多rGO纳米片,使其相对于基板垂直对齐。这些样品具有很高的场发射特性。图案化的rGO阵列具有很高的灵活性,即使在大的弯曲角度下也能保持场发射特性。这归因于rGO阵列的高结晶度,发射极密度和良好的化学稳定性,以及rGO阵列与基板之间的强相互作用。

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