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首页> 外文期刊>ACS applied materials & interfaces >Freestanding and Supported MoS2 Monolayers under Cluster Irradiation: Insights from Molecular Dynamics Simulations
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Freestanding and Supported MoS2 Monolayers under Cluster Irradiation: Insights from Molecular Dynamics Simulations

机译:集群照射下的独立和支持的MOS2单层:分子动力学模拟的见解

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摘要

Two-dimensional (2D) materials with nanometer-size holes are promising systems for DNA sequencing, water purification, and molecule selection/separation. However, controllable creation of holes with uniform sizes and shapes is still a challenge, especially when the 2D material consists of several atomic layers as, e.g., MoS2, the archetypical transition metal dichalcogenide. We use analytical potential molecular dynamics simulations to study the response of 2D MoS2 to cluster irradiation. We model both freestanding and supported sheets and assess the amount of damage created in MoS2 by the impacts of noble gas clusters in a wide range of cluster energies and incident angles. We show that cluster irradiation can be used to produce uniform holes in 2D MoS2 with the diameter being dependent on cluster size and energy. Energetic clusters can also be used to displace sulfur atoms preferentially from either top or bottom layers of S atoms in MoS2 and also clean the surface of MoS2 sheets from adsorbents. Our results for MoS2, which should be relevant to other 2D transition metal dichalcogenides, suggest new routes toward cluster beam engineering of devices based on 2D inorganic materials.
机译:具有纳米尺寸孔的二维(2D)材料是DNA测序,水净化和分子选择/分离的有希望的系统。然而,具有均匀尺寸和形状的孔的可控创建仍然是一个挑战,特别是当2D材料由若干原子层组成时,例如MOS2,原子型过渡金属二均甲基化物。我们使用分析潜在的分子动力学模拟来研究2D MOS2响应簇辐照。我们模拟了一个独立和支持的床单,并评估MOS2中创造的损坏量,通过贵族气体集群在广泛的集群能量和入射角的影响。我们表明群集照射可用于在2D MOS2中产生均匀的孔,直径取决于簇大小和能量。能量簇也可用于优先从SOM2中的S原子的顶层或底层置换硫原子,并且还从吸附剂中清洁MOS2片的表面。我们对MOS2的结果,应与其他2D过渡金属二甲甲基生物有关,建议基于2D无机材料的器件集群光束工程的新路线。

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