论文标题

H-BN增长过程中有序的纳米方相的演变:通过$ \ textit {intu} $监视控制从气相前体到2D材料的路线

Evolution of ordered nanoporous phases during h-BN growth: Controlling the route from gas-phase precursor to 2D material by $\textit{in-situ}$ monitoring

论文作者

Ruckhofer, Adrian, Sacchi, Marco, Payne, Anthony, Jardine, Andrew P., Ernst, Wolfgang E., Avidor, Nadav, Tamtögl, Anton

论文摘要

可以通过化学蒸气沉积(CVD)生长二维(2D)材料(2D)材料的大面积单晶单层。但是,出现从气相前体转换为2D材料的高温和快速时间尺度,同时遵循原子布置使其​​极具挑战性。我们利用氦原子散射在CVD过程中发现和控制新型2D H-BN纳米孔的生长。我们发现,在从气相前体形成H-BN之前,形成了亚稳态$(3 \ times3)$结构,并且对产生的2D H-BN的过量沉积导致出现$(3 \ times4)$结构。我们说明这些纳米方面的结构是通过吸附后硼嗪前体的部分脱氢和聚合产生的。在合成2D材料期间,这些步骤在很大程度上尚未探索,我们在CVD生长过程中揭示了丰富的相。我们的结果通过调整或仔细控制生长条件,从而利用这些中间结构来合成共价自组装2D网络,从而为CVD中的2D材料工程提供了重要的基础。

Large-area single-crystal monolayers of two-dimensional (2D) materials such as graphene and hexagonal boron nitride (h-BN) can be grown by chemical vapour deposition (CVD). However, the high temperatures and fast timescales at which the conversion from a gas-phase precursor to the 2D material appear, make it extremely challenging to simultaneously follow the atomic arrangements. We utilise helium atom scattering to discover and control the growth of novel 2D h-BN nanoporous phases during the CVD process. We find that prior to the formation of h-BN from the gas-phase precursor, a metastable $(3\times3)$ structure is formed, and that excess deposition on the resulting 2D h-BN leads to the emergence of a $(3\times4)$ structure. We illustrate that these nanoporous structures are produced by partial dehydrogenation and polymerisation of the borazine precursor upon adsorption. These steps are largely unexplored during the synthesis of 2D materials and we unveil the rich phases during CVD growth. Our results provide significant foundations for 2D materials engineering in CVD, by adjusting or carefully controlling the growth conditions and thus exploiting these intermediate structures for the synthesis of covalent self-assembled 2D networks.

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