Yoon Young-Jin, Ha Jae-Min, Seo Hyuk-Jin, Jang Jong Dae, Do Changwoo, Kim Tae-Hwan
Department of Applied Plasma & Quantum Beam Engineering, Jeonbuk National University, Jeonju 54896, Republic of Korea.
Research Center for Advanced Nuclear Interdisciplinary Technology, Jeonbuk National University, Jeonju 54896, Republic of Korea.
Nanoscale. 2023 Aug 3;15(30):12481-12491. doi: 10.1039/d3nr01972a.
Binary nanoparticle superlattices (BNSLs) are one of the important classes of nanomaterial architectures for a wide range of potential applications because they can provide synergistically enhanced properties depending on the morphology and spatial arrangement of nanoparticles (NPs). However, although many studies have been conducted on the fabrication of BNSLs, there are still several challenges in achieving BNSLs with a three-dimensional lattice due to their complicated synthesis, hindering their practical applications. Herein, we report the fabrication of temperature-sensitive BNSLs in complexes of gold nanoparticles (AuNPs), Brij 58 surfactant, and water a two-step evaporation method. The surfactant was utilized for two different purposes, , surface modification of the AuNPs to control their interfacial energy and as a template material for the formation of the superlattice. Depending on the size and concentration of the AuNPs, the mixture of AuNPs and surfactant self-assembled into three types of BNSLs, including CaF, AlB, and NaZn, which were sensitive to temperature. This study is the first demonstration of the temperature- and particle size-dependent control of BNSLs in the bulk state without the covalent functionalization of NPs a simple two-step solvent evaporation method.
二元纳米颗粒超晶格(BNSLs)是一类重要的纳米材料结构,具有广泛的潜在应用,因为它们可以根据纳米颗粒(NPs)的形态和空间排列提供协同增强的性能。然而,尽管已经对BNSLs的制备进行了许多研究,但由于其合成过程复杂,在制备具有三维晶格的BNSLs方面仍然存在一些挑战,这阻碍了它们的实际应用。在此,我们报道了通过两步蒸发法在金纳米颗粒(AuNPs)、Brij 58表面活性剂和水的复合物中制备温度敏感的BNSLs。该表面活性剂有两个不同的用途,一是对AuNPs进行表面改性以控制其界面能,二是作为形成超晶格的模板材料。根据AuNPs的尺寸和浓度,AuNPs与表面活性剂的混合物自组装成三种类型的对温度敏感的BNSLs,包括CaF、AlB和NaZn。本研究首次展示了在不进行NPs共价功能化的情况下,通过简单的两步溶剂蒸发法对块状状态下的BNSLs进行温度和颗粒尺寸依赖性控制。