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Simulation study of cyclic-tethered nanocube self-assemblies: effect of tethered nanocube architectures

机译:循环束缚纳米立方体自组装的仿真研究:束缚纳米立方体体系结构的影响

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Self-assembly of lunctionalized nano building blocks (NBBs) is a promising avenue for 'bottom-up' nanomaterials design. Experimental studies on functionalized polyhedral oligomeric silsesquioxane (POSS) nanocubes have revealed a wide variety of nanostructures from their assemblies. Our previous simulation studies have reproduced some of these nanostructures and predicted unusual phase behaviours imparted by the unique geometry of the nanocubes and their close packing patterns. Recent experiments further inspire us to explore the effects of tether topologies on functionalized nanocube self-assemblies. We use a simplified model and perform stochastic molecular dynamics simulations to map the morphological phase diagrams of cyclic tethered nanocubes with varying tether topology, tether number, and tether placement. Our results illustrate that the steric influence of the tethers can be manipulated to confer precise control over the self-assembled nanostructures and the phase behaviour. The novel controlling factors investigated in our study suggest new opportunities in controlling functionalized NBB self-assemblies.
机译:功能化纳米构件(NBB)的自组装是“自下而上”纳米材料设计的有希望的途径。对功能化的多面体低聚倍半硅氧烷(POSS)纳米立方体的实验研究表明,它们的组装物中存在各种各样的纳米结构。我们之前的模拟研究已经复制了其中的一些纳米结构,并预测了由纳米立方体的独特几何形状及其紧密堆积模式赋予的异常相行为。最近的实验进一步启发了我们探索系链拓扑对功能化纳米立方体自组装的影响。我们使用简化的模型并执行随机分子动力学模拟,以绘制具有不同系链拓扑结构,系链数目和系链位置的环状系链纳米立方体的形态相图。我们的结果表明,可以控制系链的空间影响,以对自组装纳米结构和相行为进行精确控制。在我们的研究中调查的新型控制因素表明,在控制功能化NBB自组装方面有新的机会。

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