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Acoustofluidic Synthesis of Particulate Nanomaterials

机译:颗粒纳米材料的声毒合成

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Synthesis of nanoparticles and particulate nanomaterials with tailored properties is a central step toward many applications ranging from energy conversion and imaging/display to biosensing and nanomedicine. While existing microfluidics‐based synthesis methods offer precise control over the synthesis process, most of them rely on passive, partial mixing of reagents, which limits their applicability and potentially, adversely alter the properties of synthesized products. Here, an acoustofluidic (i.e., the fusion of acoustic and microfluidics) synthesis platform is reported to synthesize nanoparticles and nanomaterials in a controllable, reproducible manner through acoustic‐streaming‐based active mixing of reagents. The acoustofluidic strategy allows for the dynamic control of the reaction conditions simply by adjusting the strength of the acoustic streaming. With this platform, the synthesis of versatile nanoparticles/nanomaterials is demonstrated including the synthesis of polymeric nanoparticles, chitosan nanoparticles, organic–inorganic hybrid nanomaterials, metal–organic framework biocomposites, and lipid‐DNA complexes. The acoustofluidic synthesis platform, when incorporated with varying flow rates, compositions, or concentrations of reagents, will lend itself unprecedented flexibility in establishing various reaction conditions and thus enable the synthesis of versatile nanoparticles and nanomaterials with prescribed properties.
机译:具有定制性质的纳米颗粒和颗粒状纳米材料的合成是朝向许多从能量转换和成像/显示到生物传感和纳米肽的应用的中央步骤。虽然现有的基于微流体的合成方法提供精确控制合成过程,但大多数依赖于无源,部分混合试剂,这限制了它们的适用性和可能的​​,不利地改变合成产物的性质。这里,据报道,一种声毒流体(即,声学和微流体的融合)合成平台,通过试剂的声学媒体的活性混合,以可控的可再生方式合成纳米颗粒和纳米材料。声杂散策略允许通过调节声流的强度来动态控制反应条件。利用该平台,证明了通用纳米颗粒/纳米材料的合成,包括聚合物纳米颗粒,壳聚糖纳米粒子,有机 - 无机杂交纳米材料,金属 - 有机骨架生物复合材料和脂质DNA复合物的合成。当掺入不同流速,组合物或试剂的浓度时,声杂散合成平台将在建立各种反应条件下赋予本身是前所未有的灵活性,从而使得能够合成具有规定性质的通用纳米颗粒和纳米材料。

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