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通过配体交换制备的丙烯酸稳定的银纳米粒子低温制备高导电薄膜。

Low-temperature preparation of highly conductive thin films from acrylic acid-stabilized silver nanoparticles prepared through ligand exchange.

机构信息

School of Chemical Engineering and Bioengineering, University of Ulsan, Ulsan 680-749, Republic of Korea.

出版信息

Langmuir. 2010 Nov 16;26(22):17435-43. doi: 10.1021/la102627m. Epub 2010 Oct 4.

Abstract

The preparation of AcA-stabilized Ag nanoparticles and its application to make highly conductive thin films are reported. The AcA-stabilized Ag nanoparticles were prepared through a ligand exchange of original oleylamine (OLA)-coated Ag nanoparticles with acrylic acid (AcA), which acted as both an antisolvent and a modifying ligand during the ligand exchange process. Efficiencies of the ligand exchange as well as the properties of Ag nanoparticles were analyzed using various techniques including TEM, FT-IR, XPS, TGA, and UV-vis methods. The thin films were fabricated by annealing spin-coated AcA-stabilized Ag nanoparticles. Further, the effects of annealing temperature, time, and film thickness on both the film morphology and electrical conductivity have been investigated. In this work, due to the low boiling temperature of stabilizer (AcA) and adjustment of annealing conditions, high electrical conductivity was obtained for the Ag thin films. For example, when annealing at 175 °C for 30 min, a 70 nm thick film showed a maximum electrical conductivity of 1.12 × 10(5) S cm(-1). A conductive layer on a flexible polymer substrate (e.g., PET) sheet has been successfully prepared by annealing a spin-coated film at 140 °C for 30 min. The combined advantages of long-term stability of the AcA-stabilized Ag nanoparticles, low annealing temperature, and high conductivity of the prepared thin films make this relatively simple method attractive for applications in flexible electronics.

摘要

制备了 AcA 稳定的 Ag 纳米粒子,并将其应用于制备高导电薄膜。通过将原始油胺(OLA)包覆的 Ag 纳米粒子与丙烯酸(AcA)进行配体交换,制备了 AcA 稳定的 Ag 纳米粒子,AcA 在配体交换过程中既作为抗溶剂又作为修饰配体。使用 TEM、FT-IR、XPS、TGA 和 UV-vis 等多种技术分析了配体交换效率和 Ag 纳米粒子的性能。通过退火旋涂的 AcA 稳定的 Ag 纳米粒子制备了薄膜。进一步研究了退火温度、时间和薄膜厚度对薄膜形貌和电导率的影响。在这项工作中,由于稳定剂(AcA)的低沸点和退火条件的调整,Ag 薄膜获得了较高的电导率。例如,在 175°C 下退火 30 分钟时,70nm 厚的薄膜表现出 1.12×10(5) S cm(-1)的最大电导率。通过在 140°C 下退火 30 分钟旋涂的薄膜,成功地在柔性聚合物基底(例如 PET)片上制备了导电层。AcA 稳定的 Ag 纳米粒子的长期稳定性、较低的退火温度和所制备薄膜的高导电性的综合优势,使得这种相对简单的方法在柔性电子领域具有吸引力。

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