醋酸对氧化铟纳米晶形貌及等离子体性质的影响

IF 6.8 2区 材料科学 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY
Jiangtong Su  (, ), Peixian Li  (, ), Zhe Liu  (, ), Zifeng Liu  (, ), Xiaoqi Hou  (, ), Junli Duan  (, ), Ning Dai  (, ), Yang Li  (, )
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引用次数: 0

摘要

具有精确尺寸和形态的金属氧化物纳米晶体具有独特的尺寸和形状依赖的光学/光电特性,因此对其进行合成控制对于光电子应用具有重要意义。然而,对金属氧化物纳米晶尺寸和形貌控制机理的研究较少。在这里,我们证明了醋酸,前驱体初始化学反应的副产物,通过影响纳米晶体形成的成核,在决定氧化铟(In2O3)纳米晶体的形态中起主导作用。充足的乙酸会诱导各向异性生长,导致纳米花的产生,而乙酸的有限存在导致球形纳米晶体的形成。此外,还研究了In2O3纳米晶的几何形状对其等离子体性质的影响。所得的等离子体In2O3纳米晶体在近红外到中红外波段表现出可调谐的等离子体共振峰,并具有优异的空气/热稳定性。我们的工作将深入了解纳米晶体的几何控制机制,并为基于等离子体金属氧化物纳米晶体的光电和光热应用提供更多的机会。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of acetic acid on the morphology of indium oxide nanocrystals and the associated plasmonic properties

Synthetic control of metal oxide nanocrystals with precise size and morphology is of great importance for promising optoelectronic applications due to their unique size- and shape-dependent optical/optoelectronic properties. Nevertheless, the understanding of the mechanism for size and morphology control of metal oxide nanocrystals are less studied. Here, we demonstrate that acetic acid, the byproduct of the initial chemical reaction of precursors, plays a dominate role in determining the morphology of indium oxide (In2O3) nanocrystals by influencing the nucleation of the nanocrystals formation. Sufficient acetic acid would induce anisotropic growth, leading to the generation of nanoflowers, while limited existence of acetic acid results in sphere-shaped nanocrystals. Furthermore, the effects of geometries of In2O3 nanocrystals on their plasmonic properties are studied. The resulting plasmonic In2O3 nanocrystals show size-tunable plasmon resonance peaks in the near-infrared to mid-infrared regime and outstanding air/thermal stability. Our work shall give an in-depth understanding of the mechanism for geometry control of nanocrystals and offer more opportunities in potential optoelectronic and photothermal applications based on plasmonic metal oxide nanocrystals.

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来源期刊
Science China Materials
Science China Materials Materials Science-General Materials Science
CiteScore
11.40
自引率
7.40%
发文量
949
期刊介绍: Science China Materials (SCM) is a globally peer-reviewed journal that covers all facets of materials science. It is supervised by the Chinese Academy of Sciences and co-sponsored by the Chinese Academy of Sciences and the National Natural Science Foundation of China. The journal is jointly published monthly in both printed and electronic forms by Science China Press and Springer. The aim of SCM is to encourage communication of high-quality, innovative research results at the cutting-edge interface of materials science with chemistry, physics, biology, and engineering. It focuses on breakthroughs from around the world and aims to become a world-leading academic journal for materials science.
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