C7N6纳米片增强聚合物纳米复合材料力学性能的分子动力学建模

Surfaces Pub Date : 2021-08-24 DOI:10.3390/surfaces4030019
Qinghua Zhang, B. Mortazavi, F. Aldakheel
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引用次数: 3

摘要

近年来,碳氮纳米片以其优异的物理性能引起了人们的广泛关注。C7N6具有优异的力学、电学和光学性能,是纳米片研究的热点之一。本研究系统地研究了C7N6单纳米片的热-力学耦合性能。虽然温度效应对C7N6单层的力学性能有很大的影响,但对于氮化碳纳米片的热效应还没有得到充分的分析,仍然是一个开放的话题。为此,本文旨在突出这一重要方面,并研究温度对机械应力-应变响应的影响。通过分子动力学(MD)模拟,我们发现C7N6单层膜的最大强度随着温度从300 K到1100 K的升高而降低。本研究采用5% ~ 15%体积分数的C7N6/P3HT复合材料来研究C7N6的增强能力。C7N6/P3HT复合材料的单轴拉伸性能表明,添加10%C7N6可使复合材料的最大强度提高到121.80 MPa,比纯P3HT基体提高23.51%。此外,为了更好地理解这种增强机制,我们提出了一个内聚模型来研究C7N6纳米片与P3HT基体之间的界面强度。该系统的研究不仅为了解C7N6的热力学性能提供了充分的方法,而且为C7N6增强纳米复合材料的增强机理提供了充分的方法。因此,该工作为C7N6纳米片的后续研究提供了一种有价值的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Molecular Dynamics Modeling of Mechanical Properties of Polymer Nanocomposites Reinforced by C7N6 Nanosheet
Carbon-nitride nanosheets have attracted remarkable attention in recent years due to their outstanding physical properties. C7N6 is one of the hotspot nanosheets which possesses excellent mechanical, electrical, and optical properties. In this study, the coupled thermo-mechanical properties of the single nanosheet C7N6 are systematically investigated. Although temperature effects have a strong influence on the mechanical properties of C7N6 monolayer, thermal effects were not fully analyzed for carbon-nitride nanosheet and still an open topic. To this end, the presented contribution aims to highlight this important aspect and investigate the temperature influence on the mechanical stress-strain response. By using molecular dynamics (MD) simulation, we have found out that the C7N6 monolayer’s maximum strength decreases as the temperature increase from 300 K to 1100 K. In the current contribution, 5% to 15% volume fractions of C7N6/P3HT composite were employed to investigate the C7N6 reinforcing ability. Significantly, the uniaxial tensile of C7N6/P3HT composite reveals that 10%C7N6 can enhance the maximum strength of the composite to 121.80 MPa which is 23.51% higher than the pure P3HT matrix. Moreover, to better understand the enhanced mechanism, we proposed a cohesive model to investigate the interface strength between the C7N6 nanosheet and P3HT matrix. This systematic study provides not only a sufficient method to understand the C7N6 thermo-mechanical properties, but also the reinforce mechanism of the C7N6 reinforced nanocomposite. Thus, this work provides a valuable method for the later investigation of the C7N6 nanosheet.
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CiteScore
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