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Nitrogen Doped Carbon Nanotubes from Organometallic Compounds: A Review

机译:有机金属化合物氮掺杂碳纳米管的研究进展

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摘要

Nitrogen doped carbon nanotubes (N-CNTs) have become a topic of increased importance in the study of carbonaceous materials. This arises from the physical and chemical properties that are created when N is embedded in a CNT. These properties include modified chemical reactivity and modified conductivity and mechanical properties. A range of methodologies have been devised to synthesize N-CNTs. One of the procedures uses a floating catalyst in which an organometallic complex is decomposed in the gas phase in the presence of a nitrogen containing reactant to give N-CNTs. Most studies have been limited to ferrocene, ring substituted ferrocene and Fe(CO)5. This review covers the synthesis (and properties) of N-CNTs and other shaped carbon nanomaterials (SCNMs) produced using organometallic complexes. It summarizes the effects that physical parameters such as temperature, pressure, gas flow rates, type and concentration of N source etc. have on the N-CNT type, size and yields as well as the nitrogen content incorporated into the tubes that are produced from organometallic complexes. Proposed growth models for N-CNT synthesis are also reported.
机译:氮掺杂碳纳米管(N-CNT)已成为碳质材料研究中越来越重要的话题。这是由于将N嵌入CNT时产生的物理和化学性质而引起的。这些性质包括改性的化学反应性以及改性的电导率和机械性能。已经设计出多种方法来合成N-CNT。该方法之一使用浮动催化剂,其中在含氮反应物的存在下,有机金属配合物在气相中分解,得到N-CNT。大多数研究仅限于二茂铁,环取代的二茂铁和Fe(CO)5。这篇综述涵盖了使用有机金属配合物生产的N-CNT和其他形状的碳纳米材料(SCNM)的合成(和性质)。它总结了温度,压力,气体流速,氮源的类型和浓度等物理参数对N-CNT类型,尺寸和收率以及掺入由该管生产的管中的氮含量的影响。有机金属配合物。还报道了用于N-CNT合成的建议的生长模型。

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