Size-controlled synthesis of gold nanostars and their characterizations and plasmon resonances

IF 1.4 Q4 NANOSCIENCE & NANOTECHNOLOGY Journal of Nanostructures Pub Date : 2020-04-01 DOI:10.22052/JNS.2020.02.001
M. Monsefi, T. Tajerian, A. Rowan
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Abstract

Gold nanostar particles were synthesized using seed-mediated method. Au-seed was synthesized with the diameter of approximately 3 nm and a considerably low STDEV of less than 1 nm. Then, different amount of Au seed was introduced into the growth solution of nanostars and the influence of the changes in concentration of Au seed on the growth process was investigated. The size of gold nanostars increased with decreasing the concentration of Au seeds. We further extended this method to enable size-control of gold nanostars from approximately 70 nm to 140 nm in size. Also the longer branch length caused red shifting of resonant plasmonic peaks in the absorption spectra of the sample with the lower amount of Au seed. Thanks to this method, we could control size, and spikes of gold nanostars and the obtained results broaden the concept of the formation and morphology of gold nanostars. The plasmon band shift was attributed to variations in branch numbers, and overall star size.
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金纳米星的尺寸控制合成及其表征和等离子体共振
采用种子介导法合成了金纳米粒子。合成的金籽直径约为3 nm, STDEV小于1 nm。然后,在纳米星生长溶液中加入不同量的金籽,考察金籽浓度的变化对纳米星生长过程的影响。随着金粒子浓度的降低,金纳米恒星的尺寸增大。我们进一步扩展了这种方法,使金纳米恒星的尺寸控制从大约70纳米到140纳米。此外,较长的分支长度引起了金籽含量较低样品吸收光谱中共振等离子体峰的红移。利用该方法,我们可以控制金纳米星的大小和尖峰,所获得的结果拓宽了金纳米星的形成和形态的概念。等离子体带移归因于分支数和整体恒星大小的变化。
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来源期刊
Journal of Nanostructures
Journal of Nanostructures NANOSCIENCE & NANOTECHNOLOGY-
CiteScore
2.60
自引率
0.00%
发文量
0
审稿时长
7 weeks
期刊介绍: Journal of Nanostructures is a medium for global academics to exchange and disseminate their knowledge as well as the latest discoveries and advances in the science and engineering of nanostructured materials. Topics covered in the journal include, but are not limited to the following: Nanosystems for solar cell, energy, catalytic and environmental applications Quantum dots, nanocrystalline materials, nanoparticles, nanocomposites Characterization of nanostructures and size dependent properties Fullerenes, carbon nanotubes and graphene Self-assembly and molecular organization Super hydrophobic surface and material Synthesis of nanostructured materials Nanobiotechnology and nanomedicine Functionalization of nanostructures Nanomagnetics Nanosensors.
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