论文标题

金属氧化金属纳米晶体的普遍凝胶化通过耗竭景点

Universal Gelation of Metal Oxide Nanocrystals via Depletion Attractions

论文作者

Cabezas, Camila A. Saez, Sherman, Zachary M., Howard, Michael P., Dominguez, Manuel N., Cho, Shin Hum, Ong, Gary K., Green, Allison, Truskett, Thomas M., Milliron, Delia J.

论文摘要

纳米晶体凝胶提供了一个强大的框架,可将纳米级特性转化为散装材料,并通过组装的微观结构来设计新兴属性。但是,许多建立的凝胶化策略依赖于化学反应和特定相互作用,例如稳定纳米晶体表面的配体或离子,因此不容易转移。在这里,我们通过非特异性且纯粹的熵耗尽景点报告了一般的凝胶化策略,用于三种类型的金属氧化物纳米晶体。两个构图不同的球形纳米晶体的凝胶化阈值在定量上一致,证明了该方法对不同化学的适应性。与理论相行为预测一致,纳米晶多维数据集的聚合物浓度低于纳米晶球,从而使形状可以用作控制凝胶的手柄。这些结果表明,传统上与​​较大的胶体颗粒相关的耗竭驱动组装的基本基础也适用于纳米级。

Nanocrystal gelation provides a powerful framework to translate nanoscale properties into bulk materials and to engineer emergent properties through the assembled microstructure. However, many established gelation strategies rely on chemical reactions and specific interactions, e.g., stabilizing ligands or ions on the surface of the nanocrystals, and are therefore not easily transferrable. Here, we report a general gelation strategy via non-specific and purely entropic depletion attractions applied to three types of metal oxide nanocrystals. The gelation thresholds of two compositionally distinct spherical nanocrystals agree quantitatively, demonstrating the adaptability of the approach for different chemistries. Consistent with theoretical phase behavior predictions, nanocrystal cubes form gels at a lower polymer concentration than nanocrystal spheres, allowing shape to serve as a handle to control gelation. These results suggest that the fundamental underpinnings of depletion-driven assembly, traditionally associated with larger colloidal particles, are also applicable at the nanoscale.

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