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Microwave-assisted synthesis of gold nanoparticles self-assembled into self-supported superstructures

机译:金微波辅助合成纳米颗粒自组装成自支撑的上层结构

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摘要

Passivated gold nanoparticles were synthesized through a microwave-assisted process in a two-phase system, in the presence of 1-dodecanethiol. An average particle size of 1.8 nm of the gold nanoparticles obtained and 0.35 S.D. was determined through HRTEM and STEM analysis. It was observed that these nanoparticles spontaneously self-assemble into self-supported superstructures of 1 μm in diameter avg and 400 nm thickness, yielding an off-white powder which can be handled as a simple powder. XRD analysis indicates that n-alkanethiol molecules used as a passivating compound, besides protecting against crystal growth, interact to form cubic ordered arrays between the nanoparticles. This interaction leads to the superstructure formation, with an average distance between nanoparticles in the array, of 3.56 nm. Theoretical calculations and molecular dynamics simulations were performed to analyze the resulting structure.
机译:在1-十二烷硫醇存在下,通过在两相体系中的微波辅助方法合成钝化的金纳米颗粒。获得的金纳米颗粒的平均粒度为1.8nm,并为0.35 s.d。通过HRTEM和Stem分析确定。观察到这些纳米颗粒自发地自组装成直径AVG和400nm厚度的1μm的自支撑上部结构,产生灰白色粉末,其可以作为简单的粉末处理。 XRD分析表明,除了保护晶体生长之外,用作钝化化合物的N-链烷醇分子相互作用以在纳米颗粒之间形成立方有序阵列。该相互作用导致上部结构形成,阵列中纳米颗粒之间的平均距离为3.56nm。进行理论计算和分子动力学模拟以分析所得结构。

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