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Shape-Controlled Synthesis of Hybrid Nanomaterials via Three-Dimensional Hydrodynamic Focusing

机译:三维流体动力学聚焦的杂化纳米材料的形状控制合成

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摘要

Shape-controlled synthesis of nanomaterials through a simple, continuous, and low-cost method is essential to nanomaterials research toward practical applications. Hydrodynamic focusing, with its advantages of simplicity, low-cost, and precise control over reaction conditions, has been used for nanomaterial synthesis. While most studies have focused on improving the uniformity and size control, few have addressed the potential of tuning the shape of the synthesized nanomaterials. Here we demonstrate a facile method to synthesize hybrid materials by three-dimensional hydrodynamic focusing (3D-HF). While keeping the flow rates of the reagents constant and changing only the flow rate of the buffer solution, the molar ratio of two reactants (i.e., tetrathiafulvalene (TTF) and HAuCl4) within the reaction zone varies. The synthesized TTF–Au hybrid materials possess very different and predictable morphologies. The reaction conditions at different buffer flow rates are studied through computational simulation, and the formation mechanisms of different structures are discussed. This simple one-step method to achieve continuous shape-tunable synthesis highlights the potential of 3D-HF in nanomaterials research.
机译:通过简单,连续和低成本的方法进行形状受控的纳米材料合成对于纳米材料向实际应用的研究至关重要。流体动力学聚焦以其简单,低成本和对反应条件的精确控制的优点,已被用于纳米材料的合成。尽管大多数研究都集中在改善均匀性和尺寸控制上,但很少有研究涉及调节合成纳米材料形状的潜力。在这里,我们演示了一种通过三维流体动力聚焦(3D-HF)合成杂化材料的简便方法。在保持试剂的流速恒定并且仅改变缓冲液的流速的同时,反应区内两种反应物(即,四硫富瓦烯(TTF)和HAuCl 4)的摩尔比变化。合成的TTF-Au杂化材料具有非常不同且可预测的形态。通过计算仿真研究了不同缓冲液流速下的反应条件,并探讨了不同结构的形成机理。这种简单的一步式方法可实现连续的形状可调合成,突出了3D-HF在纳米材料研究中的潜力。

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