Cordoyiannis George, Lavrič Marta, Tzitzios Vasileios, Trček Maja, Lelidis Ioannis, Nounesis George, Kralj Samo, Thoen Jan, Kutnjak Zdravko
Condensed Matter Physics Department, Jožef Stefan Institute, 1000 Ljubljana, Slovenia.
Faculty of Mechanical Engineering, Czech Technical University in Prague, 16600 Prague 6, Czech Republic.
Nanomaterials (Basel). 2021 Nov 5;11(11):2968. doi: 10.3390/nano11112968.
Recent advances in experimental studies of nanoparticle-driven stabilization of chiral liquid-crystalline phases are highlighted. The stabilization is achieved via the nanoparticles' assembly in the defect lattices of the soft liquid-crystalline hosts. This is of significant importance for understanding the interactions of nanoparticles with topological defects and for envisioned technological applications. We demonstrate that blue phases are stabilized and twist-grain boundary phases are induced by dispersing surface-functionalized CdSSe quantum dots, spherical Au nanoparticles, as well as MoS nanoplatelets and reduced-graphene oxide nanosheets in chiral liquid crystals. Phase diagrams are shown based on calorimetric and optical measurements. Our findings related to the role of the nanoparticle core composition, size, shape, and surface coating on the stabilization effect are presented, followed by an overview of and comparison with other related studies in the literature. Moreover, the key points of the underlying mechanisms are summarized and prospects in the field are briefly discussed.
本文重点介绍了纳米颗粒驱动手性液晶相稳定化的实验研究的最新进展。这种稳定化是通过纳米颗粒在软液晶主体的缺陷晶格中组装实现的。这对于理解纳米颗粒与拓扑缺陷的相互作用以及预期的技术应用具有重要意义。我们证明,通过将表面功能化的CdSSe量子点、球形金纳米颗粒以及MoS纳米片和还原氧化石墨烯纳米片分散在手性液晶中,可以稳定蓝相并诱导扭曲 grain 边界相。基于量热和光学测量给出了相图。我们展示了纳米颗粒核心组成、尺寸、形状和表面涂层对稳定化效果的作用相关的研究结果,随后概述并比较了文献中的其他相关研究。此外,总结了潜在机制的关键点,并简要讨论了该领域的前景。