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Gas-induced formation of Cu nanoparticle as catalyst for high-purity straight and helical carbon nanofibers

机译:气体诱导形成的铜纳米粒子作为高纯度直碳和螺旋碳纳米纤维的催化剂

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摘要

The facile preparation of high-purity carbon nanofibers (CNFs) remains challenging due to the high complexity and low controllability in reaction. A novel approach using gas-induced formation of Cu crystals to control the growth of CNFs is developed in this study. By adjusting the atmospheric composition, controllable preparation of Cu nanoparticles (NPs) with specific size and shape is achieved, and they are further used as a catalyst for the growth of straight or helical CNFs with good selectivity and high yield. The preparation of Cu NPs and the formation of CNFs are completed by a one-step process. The inducing effect of N _2, Ar, H _2, and C _2H _2 on the formation of Cu NPs is systematically investigated through a combined experimental and computational approach. The morphology of CNFs obtained under different conditions is rationalized in terms of Cu NP and CNF growth models. The results suggest that the shapes of CNFs, namely, straight or helical, depend closely on the size, shape, and facet activity of Cu NPs, while such a gas-inducing method offers a simple way to control the formation of Cu NPs.
机译:由于反应的高复杂性和低可控性,高纯度碳纳米纤维(CNF)的简便制备仍然具有挑战性。在这项研究中开发了一种新的方法,该方法使用气体诱导的Cu晶体形成来控制CNF的生长。通过调节大气成分,可控制地制备具有特定尺寸和形状的Cu纳米粒子(NPs),并将它们进一步用作具有良好选择性和高收率的直链或螺旋CNF生长催化剂。 Cu NP的制备和CNF的形成通过一步法完成。通过实验和计算相结合的方法,系统地研究了N _2,Ar,H _2和C _2H _2对Cu NPs的诱导作用。根据Cu NP和CNF生长模型,合理化了在不同条件下获得的CNF的形态。结果表明,CNF的形状,即直的或螺旋的,紧密取决于Cu NP的大小,形状和小面活性,而这种气体诱导方法提供了控制Cu NP形成的简单方法。

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