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Polymerization-Like Co-Assembly of Silver Nanoplates and Patchy Spheres

机译:银纳米板和斑块球的聚合的共同组装

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摘要

Highly anisometric nanoparticles have distinctive mechanical, electrical, and thermal properties and are therefore appealing candidates for use as self -assembly building blocks. Here, we demonstrate that ultra-anisometric nanoplates, which have a nanoscale thickness but a micrometer-scale edge length, offer many material design capabilities. In particular, we show that these nanoplates "copolymerize" in a predictable way with patchy spheres (Janus and triblock particles) into one-and two-dimensional structures with tunable architectural properties. We find that, on the pathway to these structures, nanoplates assemble into chains following the kinetics of molecular step -growth polymerization. In the same mechanistic framework, patchy spheres control the size distribution and morphology of assembled structures, by behaving as monofunctional chain stoppers or multifunctional branch points during nanoplate polymerization. In addition, both the lattice constant and the stiffness of the nanoplate assemblies can be manipulated after assembly. We see highly anisometric nanoplates as one representative of a broader class of dual length -scale nanoparticles, with the potential to enrich the library of structures and properties available to the nanoparticle self -assembly toolbox.
机译:高辐射纳米颗粒具有独特的机械,电气和热性能,因此具有吸引人的候选者,以用作自动组装构建块。这里,我们证明了具有纳米级厚度但微米级边缘长度的超辐射纳米板提供了许多材料设计能力。特别地,我们表明,这些纳米纳米以可预测的方式“共聚”,其具有斑驳的球体(Janus和Triblock颗粒)与具有可调谐架构性质的单一和二维结构。我们发现,在这些结构的途径上,纳米间纳层在分子步长聚合的动力学之后将链组装成链。在相同的机制框架中,拼凑的球体控制组装结构的尺寸分布和形态,通过表现为在纳米板聚合过程中单官能链塞或多官能分支点。另外,可以在组装后操纵晶格常数和纳米板组件的刚度。我们将高辐射纳米电压板作为一个代表更广泛的双长度 - 型纳米颗粒,具有富含纳米颗粒自卸工具箱可用的结构和性质文库的潜力。

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