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Hybrid One-DimensionalNanostructures: One-Pot Preparationof Nanoparticle Chains via Directed Self-Assembly of in Situ SynthesizedDiscrete Au Nanoparticles

机译:混合一维纳米结构:一罐制备原位合成直接自组装制备纳米链离散金纳米粒子

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摘要

The fabrication of well-defined one-dimensional (1D) arrays is becoming a challenge for the development of the next generation of advanced nanodevices. Herein, a simple concept is proposed for the in situ synthesis and self-assembly of gold nanoparticles (AuNPs) into 1D arrays via a one-step process. The results demonstrated the formation of nanoparticle chains (NPC) with high aspect ratio based on discrete Au nanoparticles stabilized by short thiol ligands. A model was proposed to explain the self-assembly based on the investigation of several parameters such as pH, solvent, temperature, and nature of the ligand on the 1D assembly formation. Hydrogen bonding was identified as a key factor to direct the self-assembly of the hybrid organic–inorganic nanomaterials into the well-defined 1D nanostructures. This simple and cost-effective concept could potentially be extended to the fabrication of a variety of hybrid 1D nanostructures possessing unique physical properties leading to a wide range of applications including catalysis, bionanotechnology, nanoelectronics, and photonics.
机译:定义明确的一维(1D)阵列的制造正成为下一代先进纳米器件开发的挑战。在这里,提出了一个简单的概念,用于通过一步法将金纳米颗粒(AuNPs)原位合成和自组装成一维阵列。结果表明,基于由短硫醇配体稳定的离散Au纳米颗粒,高纵横比纳米颗粒链(NPC)的形成。提出了一个模型来解释自组装,该模型基于对一些参数的研究,例如pH,溶剂,温度和一维组装形成中配体的性质。氢键被认为是将有机-无机杂化纳米材料自组装成定义明确的一维纳米结构的关键因素。这个简单且具有成本效益的概念可能会扩展到具有独特物理特性的各种混合1D纳米结构的制造,从而导致广泛的应用,包括催化,仿生技术,纳米电子学和光子学。

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