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Establishing the most favorable metal-carbon bond strength for carbon nanotube catalysts

机译:为碳纳米管催化剂建立最有利的金属-碳键强度

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摘要

We have studied a wide range of transition metals to find potential carbon nanotube (CNT) catalysts for chemical vapor deposition (CVD) production. The adhesion strengths between a CNT and a metal cluster were calculated using first principle density functional theory (DFT) for all 1st, 2nd and 3rd row transition metals. We have developed the criterion that the metal-carbon adhesion strength per bond must fulfill a Goldilocks principle for catalyzing CNT growth and used it to identify, besides the well known catalysts Fe, Co and Ni, a number of other potential catalysts, namely Y, Zr, Rh, Pd, La, Ce and Pt. Our results are consistent with previous experiments performed either in a carbon arc discharge environment or by a CVD-process with regard to CNT catalyst activity
机译:我们已经研究了多种过渡金属,以发现潜在的碳纳米管(CNT)催化剂,用于化学气相沉积(CVD)生产。使用第一原理密度泛函理论(DFT)计算所有第一,第二和第三行过渡金属的CNT与金属簇之间的粘合强度。我们已经制定了这样的标准,即每个键的金属-碳粘合强度必须满足Goldilocks原理,以催化CNT的生长,并用它来识别除众所周知的催化剂Fe,Co和Ni外,还有许多其他潜在的催化剂,即Y, Zr,Rh,Pd,La,Ce和Pt。我们的结果与先前在碳弧放电环境中或通过CVD工艺在CNT催化剂活性方面进行的实验一致

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