摘要
Hydrocarbon conversion to advanced carbon nanomaterials with concurrent hydrogen production holds promise for clean energy technologies. This has been largely enabled by the floating catalyst chemical vapor deposition (FCCVD) growth of carbon nanotubes (CNTs), where commonly catalytic iron nanoparticles are formed from ferrocene decomposition. However, the catalyst formation mechanism and the effect of the chemical environment, especially hydrogen, remain elusive. Here, by employing atomistic simulations, we demonstrate how (i) hydrogen accelerates the ferrocene decomposition and (ii) prevents catalyst encapsulation. A subsequent catalytic dehydrogenation of methane on a liquid Fe nanoparticle showed that carbon dimers tend to be the dominant on-surface species. Such atomistic insights help us better understand the catalyst formation and CNT nucleation in the early stages of the FCCVD growth process and optimize it for potential scaleup.
| 源语言 | 英语 |
|---|---|
| 页(从-至) | 4266-4272 |
| 页数 | 7 |
| 期刊 | Journal of Physical Chemistry Letters |
| 卷 | 14 |
| 期 | 18 |
| DOI | |
| 出版状态 | 已出版 - 11 5月 2023 |
| 已对外发布 | 是 |
联合国可持续发展目标
此成果有助于实现下列可持续发展目标:
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可持续发展目标 7 经济适用的清洁能源
指纹
探究 'Floating Fe Catalyst Formation and Effects of Hydrogen Environment in the Growth of Carbon Nanotubes' 的科研主题。它们共同构成独一无二的指纹。引用此
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