论文标题

结构和化学机制管理无机Janus纳米管的稳定性

Structural and chemical mechanisms governing stability of inorganic Janus nanotubes

论文作者

Bölle, Felix Tim, Mikkelsen, August E. G., Thygesen, Kristian S., Vegge, Tejs, Castelli, Ivano E.

论文摘要

一维无机纳米管由于其独特的物理/化学特性而对技术应用有望,但到目前为止,在产生半径明确的单壁纳米管方面的困难阻碍了进步。在这项工作中,我们根据密度功能理论(DFT)研究了135种不同有机纳米管的形成机制,由在不对称的2d Janus板中发现的固有自动驱动力形成。我们表明,对于Isovalent Janus片,内部原子层和外部原子层之间的晶格不匹配是纳米管形成背后的驱动力,而在非价值的情况下,它受内部和外层化学键强度的差异,导致空间作用。从我们的候选结构池中,我们确定了超过35Å半径的100多个管,我们假设这可以显示出与其父二维单层相比的独特属性。已经确定了简单的描述符,以加速发现小拉迪乌斯管的发现,并且已经实施了贝叶斯回归方法来评估我们对半径的预测中的不确定性。

One-dimensional inorganic nanotubes hold promise for technological applications due to their distinct physical/chemical properties, but so far advancements have been hampered by difficulties in producing single-wall nanotubes with a well-defined radius. In this work we investigate, based on Density Functional Theory (DFT), the formation mechanism of 135 different inorganic nanotubes formed by the intrinsic self-rolling driving force found in asymmetric 2D Janus sheets. We show that for isovalent Janus sheets, the lattice mismatch between inner and outer atomic layers is the driving force behind the nanotube formation, while in the non-isovalent case it is governed by the difference in chemical bond strength of the inner and outer layer leading to steric effects. From our pool of candidate structures we have identified more than 100 tubes with a preferred radius below 35 Å, which we hypothesize can display unique properties compared to their parent 2D monolayers. Simple descriptors have been identified to accelerate the discovery of small-radius tubes and a Bayesian regression approach has been implemented to assess the uncertainty in our predictions on the radius.

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