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金锡纳米颗粒性质的飞行中调谐

In-Flight Tuning of Au-Sn Nanoparticle Properties.

作者信息

Ternero Pau, Preger Calle, Eriksson Axel Christian, Rissler Jenny, Hübner Julia-Maria, Messing Maria E

机构信息

Department of Physics and NanoLund, Lund University, 221 00 Lund, Sweden.

Department of Design Sciences and NanoLund, Lund University, 221 00 Lund, Sweden.

出版信息

Langmuir. 2024 Aug 6;40(31):16393-16399. doi: 10.1021/acs.langmuir.4c01656. Epub 2024 Jul 26.

Abstract

Multimetallic nanoparticles possess a variety of beneficial properties with potential relevance for various applications. These metallic nanoparticles can consist of randomly ordered alloys, which retain the properties of the constituting elements, or ordered intermetallics, which possess extended properties. Depending on the desired application, specific alloys or intermetallic compounds are required. However, it remains challenging to achieve particular morphologies, crystal structures, chemical compositions, and particle sizes because of the inherent complexity of nanoparticle synthesis. In this work, Au-Sn nanoparticles were synthesized using a continuous one-step gas-phase synthesis method that offers the possibility to anneal the nanoparticles in flight directly after generation to tune their properties. The bimetallic model system Au-Sn, comprising both alloys and intermetallic compounds, was studied in the temperature range of 300 to 1100 °C. The bimetallic Au/Sn ratio in the nanoparticles can be adjusted with in-flight annealing between 70/30 and 40/60 atomic %. While Au-rich alloys are obtained at lower temperatures, the increase in the annealing temperature leads to the formation of more Sn-rich intermetallic phases. Surface and size effects greatly influence particle morphologies and phase fractions. This research opens new opportunities for the synthesis of customized nanoparticles by temperature adjustment and particle size selection.

摘要

多金属纳米颗粒具有多种有益特性,在各种应用中具有潜在的相关性。这些金属纳米颗粒可以由随机有序的合金组成,合金保留了构成元素的特性,也可以由具有扩展特性的有序金属间化合物组成。根据所需的应用,需要特定的合金或金属间化合物。然而,由于纳米颗粒合成固有的复杂性,实现特定的形态、晶体结构、化学成分和颗粒尺寸仍然具有挑战性。在这项工作中,采用连续一步气相合成法合成了金锡纳米颗粒,该方法提供了在纳米颗粒生成后直接在飞行中进行退火以调整其性能的可能性。研究了包含合金和金属间化合物的双金属模型系统金锡,温度范围为300至1100°C。纳米颗粒中的双金属金/锡比可以通过飞行中退火在70/30至40/60原子%之间进行调整。在较低温度下获得富金合金,退火温度的升高导致形成更多富锡金属间相。表面和尺寸效应极大地影响颗粒形态和相分数。这项研究为通过温度调节和颗粒尺寸选择合成定制纳米颗粒开辟了新机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d9e4/11308768/938465150326/la4c01656_0001.jpg

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