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On-surface synthesis: a promising strategy toward the encapsulation of air unstable ultra-thin 2D materials

机译:表面合成:一个有前途的战略方向空气不稳定的超薄2 d的封装材料

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2D black phosphorus (BP) and transition metal chalcogenides (TMCs) have beneficial electronic, optical, and physical properties at the few-layer limit. However, irreversible degradation of exfoliated or chemical vapor deposition-grown ultrathin BP and TMCs like GaSe via oxidation under ambient conditions limits their applications. Herein, the on-surface growth of an oxidation-resistant 2D thin film of a metal coordination polymer is demonstrated by multiscale simulations. We show that the preparation of such hetero-structures can be conducted in solution, in which pristine BP and GaSe present better stability than in an air environment. Our calculations reveal that the interaction between the polymer layer and 2D materials is dominated by van der Waals forces; thus, the electronic properties of pristine BP and GaSe are well preserved. Meanwhile, the isolation from oxygen and water can be achieved by monolayer polymers, due to the nature of their close-packed layers. Our facile strategy for enhancing the environmental stability of ultrathin materials is expected to accelerate efforts to implement 2D materials in electronic and optoelectronic applications.
机译:2 d黑磷(BP)和过渡金属硫属化合物(tmc)电子有有益的,在few-layer光学和物理特性极限。剥落或化学蒸汽deposition-grown超薄BP和差旅管理公司通过氧化硒化镓在环境条件下限制了他们应用程序。抗氧化二维薄膜的金属配位聚合物是证明了多尺度模拟。这样的hetero-structures可以准备在溶液中进行,原始BP和硒化镓现在比在一个空气更好的稳定性环境。聚合物层和2 d之间的交互材料主要是范德华力;因此,原始的英国石油(BP)的电子性质和硒化镓是保存完好。隔绝氧气和水由单层聚合物,由于他们的本质拥挤不堪的层。提高环境的稳定性超薄材料有望加速努力实现2 d电子材料和光电应用程序。

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