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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Application of Graphene as a Nanoindenter Interacting with Phospholipid Membranes-Computer Simulation Study
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Application of Graphene as a Nanoindenter Interacting with Phospholipid Membranes-Computer Simulation Study

机译:石墨烯作为纳入膜与磷脂膜 - 计算机仿真研究的纳米茚流施用

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摘要

Synthesis of graphene (GN) in 2004 stimulated wide interest in potential applications of 2D materials in catalysis, optoelectronics, biotechnology, and construction of sensing devices. In the presented study, interactions between GN sheets and phospholipid bilayers are examined using steered molecular dynamics simulations. GN sheets of different sizes were inserted into a bilayer and subsequently withdrawn from it at two different rates (1 and 2 m/s). In some cases, nanoindentation led to substantial damage of the phospholipid bilayer; however, an effective self-sealing process occurred even after significant degradation. The average force and work, deflection of the membrane during indentation, withdrawal processes, and structural changes caused by moving sheets are discussed. These quantities are utilized to estimate the suitability of GN sheets for targeted drug delivery or other nanomedicine tools. The results are compared with those obtained for other nanostructures such as homogeneous and heterogeneous nanotubes.
机译:2004年石墨烯(GN)的合成刺激了对催化,光电子,生物技术和传感装置构造的2D材料潜在应用的广泛兴趣。在本研究中,使用转向分子动力学模拟检查GN片和磷脂双层之间的相互作用。将不同尺寸的GN片材插入双层并随后以两种不同的速率(1和2m / s)从中取出。在某些情况下,纳米indentation导致磷脂双层的大量损伤;然而,即使在显着降解后也发生了有效的自密封过程。讨论了缩进,戒断过程和由移动纸张引起的结构变化期间膜的平均力和工作。这些数量用于估计GN片材的适用性,用于靶向药物输送或其他纳米胺类工具。将结果与其他纳米结构(例如均相和非均相纳米管)进行比较。

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