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Understanding the role of AgNO3 concentration and seed morphology in the achievement of tunable shape control in gold nanostars

机译:硝酸银浓度的作用,理解种子形态可调的成就在黄金nanostars形状控制

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Gold nanostars are one of the most fascinating anisotropic nanoparticles. The morphology of a nanostar can be controlled by changing various synthetic parameters; however, the detailed growth mechanism is still not fully understood. Herein, we investigate this process in six-branched nanostars, focusing first on the properties of a single crystalline seed, which evolves to include penta-twinned defects as the gateway to anisotropic growth into the 6-branched morphology. In particular, we report on a high-yield seed-mediated protocol for the synthesis of these particles with high dimensional monodispersity in the presence of Triton-X, ascorbic acid, and AgNO3. Detailed spectroscopic and microscopic analyses have allowed the identification of several key intermediates in the growth process, revealing that it proceeds via penta-twinned intermediate seeds. Importantly, we report the first experimental evidence tracking the location of silver with sub-nanometer resolution and prove its role as a stabilizing agent in these highly branched nanostructures. Our results indicate that metallic silver on the spikes stabilizes the nanostar morphology and the remaining silver, present when AgNO3 is added at a high concentration, deposits on the core and between the bases of neighboring spikes. Importantly, we also demonstrate the possibility of achieving dimensional monodispersity, reproducibility, and tunability in colloidal gold nanostars that are substantially higher than those previously reported, which could be leveraged to carry out holistic computational-experimental studies to understand, predict, and tailor their plasmonic response.
机译:黄金nanostars是一个最吸引人的各向异性纳米颗粒。通过改变各种nanostar可以控制合成参数;生长机制仍不完全清楚。在此,我们研究这一过程six-branched nanostars,首先关注属性的一个水晶种子,发展包括penta-twinned缺陷的通往各向异性6-branched增长形态。高收益seed-mediated协议这些粒子的合成高尺寸单分散性的存在Triton-X、抗坏血酸和硝酸银。光谱和微观分析允许几个关键的识别中间体在生长过程中,透露了实情它通过penta-twinned中间收益种子。实验证据跟踪的位置银事实上分辨率和证明它的作用在这些高度作为稳定剂支化纳米结构。金属银在稳定的峰值nanostar形态和剩下的银子,当添加硝酸银在一个较高的水平浓度,存款之间的核心和邻近的峰值的基地。也展示实现的可能性尺寸单分散性、再现性和可调谐性的胶体金nanostars比以前更高报道,这可能是杠杆整体computational-experimental研究理解、预测和调整他们的电浆响应。

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