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A general strategy for in-situ fabrication of uniform carbon nanotubes on three-dimensional carbon architectures for electrochemical application

机译:在电化学应用的三维碳结构上原位制备均匀碳纳米管的一般策略

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Rational construction of three-dimensional (3D) porous carbon nanotubes (CNTs) hierarchical architectures can provide diverse frameworks for fabrication of functionalized electrodes to effectively enhance their electro-chemical performance. In this paper, a modified electroless deposition (ELD) process for uniformly anchoring of Ni@Pd seeds on substrates is reported. The tightly immobilized bi-metal seeds without aggregation during annealing leads to in-situ growth of uniform intertwined CNTs arrays. The ELD seeding and CNTs growth method was successfully applied on different 3D carbon- and metal- based substrates. The 3D interconnected CNTs/carbon composites offer a hierarchical micro-ano- network to facilitate electrolyte infiltration, while the CNTs arrays can effectively improve the electrical conductivity and enlarge the active surface area of the hybrids substrate. The hierarchical hybrid electrodes exhibit enhanced electrochemical performance in electrocatalysis and as a supercapacitor. The ELD process can be a general and scalable strategy for industrialized fabrication of any 3D carbon-based substrate and will be much promising in the applications of energy storage and conversion.
机译:三维(3D)多孔碳纳米管(CNT)层次结构的合理构造可以为功能化电极的制造提供各种框架,以有效增强其电化学性能。本文报道了一种改良的化学沉积(ELD)工艺,用于将Ni @ Pd种子均匀地锚定在基底上。紧密固定的双金属晶种在退火过程中没有聚集,导致均匀缠结的CNT阵列在原位生长。 ELD播种和CNTs生长方法已成功应用于不同的3D碳基和金属基基材。 3D互连的CNT /碳复合物提供了层次化的微/纳米网络,以促进电解质的渗透,而CNTs阵列可以有效地改善电导率并扩大混合衬底的有效表面积。分层混合电极在电催化中和作为超级电容器表现出增强的电化学性能。 ELD工艺可以是用于任何3D碳基基材的工业化制造的通用且可扩展的策略,在能量存储和转换的应用中将大有希望。

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