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3D Vertically Aligned CNT/Graphene Hybrids from Layer-by-Layer Transfer for Supercapacitors

机译:3D垂直对齐CNT /石墨烯杂交物,用于超级电容器的逐层转移

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摘要

The exceptional electrical, optical, thermal and mechanical properties make graphene and carbon nanotubes (CNTs) promising for a large variety of applications, including energy storage. In practice, it is higly important to translator these properties associated with the low-dimensional carbon nanomaterials into bulk materials/devices. Recent theoretical studies have proven that three-dimensional (3D) pillared architectures, consisting of parallel graphene layers intercalated by vertically aligned carbon nanotubes (VA-CNTs) in between, possess desriable transport and mechanical properties in all dimensions while maintaining the excellent properties of their building blocks. However, it remains challenging to experimentally realize such 3D pillared graphene/VA-CNT hybrids. Here, tunable 3D pillared graphene/VA-CNT architectures are formed by chemical vapor deposition, and a template-free contact transfer process is presented, involving the hydrophobic-hydrophobic interactions between graphene and VA-CNTs. The resultant 3D graphene/VA-CNT hybrids are demonstrated to be efficient electrode materials for supercapacitors with good performance. This newly-developed methodology holds great potential for fabricating various 3D architectures with many other materials for a wide range of multifunctional applications, including energy storage, electrical and thermal managements, and flexible electronics.
机译:卓越的电气,光学,热和机械性能使石墨烯和碳纳米管(CNTs)具有很大种类的应用,包括储能。在实践中,将与低维碳纳米材料相关联的这些性质转化为散装材料/装置是很重要的。最近的理论研究已经证明,由垂直对准的碳纳米管(Va-CNT)嵌入的平行石墨烯层组成的三维(3D)柱形层,在所有尺寸中具有可靠的运输和机械性能,同时保持其优异的性能建筑模块。然而,实验地实现了这种3D柱状石墨烯/ VA-CNT杂种仍然具有挑战性。这里,可调谐3D柱状石墨烯/ VA-CNT架构是通过化学气相沉积形成的,并呈现了无模板的接触转移过程,涉及石墨烯和VA-CNT之间的疏水 - 疏水相互作用。结果,所得的3D石墨烯/ VA-CNT杂交物被证明是具有良好性能的超级电容器的有效电极材料。这种新开发的方法具有制造各种3D架构的巨大潜力,其中许多其他材料用于各种多功能应用,包括储能,电气和热管理和柔性电子器件。

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