NANOPTO Group, Institue of Materials Science of Barcelona, Bellaterra, 08193, Spain.
National Center for Electron Microscopy in Beijing, School of Materials Science and Engineering, Tsinghua University, Beijing 100084, People's Republic of China.
Chem Rev. 2023 Apr 12;123(7):3493-3542. doi: 10.1021/acs.chemrev.3c00033. Epub 2023 Mar 22.
The pseudo-two-dimensional (2D) morphology of plate-like metal nanoparticles makes them one of the most anisotropic, mechanistically understood, and tunable structures available. Although well-known for their superior plasmonic properties, recent progress in the 2D growth of various other materials has led to an increasingly diverse family of plate-like metal nanoparticles, giving rise to numerous appealing properties and applications. In this review, we summarize recent progress on the solution-phase growth of colloidal plate-like metal nanoparticles, including plasmonic and other metals, with an emphasis on mechanistic insights for different synthetic strategies, the crystallographic habits of different metals, and the use of nanoplates as scaffolds for the synthesis of other derivative structures. We additionally highlight representative self-assembly techniques and provide a brief overview on the attractive properties and unique versatility benefiting from the 2D morphology. Finally, we share our opinions on the existing challenges and future perspectives for plate-like metal nanomaterials.
板状金属纳米粒子的伪二维(2D)形态使它们成为最各向异性、在机制上理解最透彻和可调谐的结构之一。尽管它们的等离子体特性众所周知,但最近各种其他材料的 2D 生长方面的进展导致了越来越多样化的板状金属纳米粒子家族,从而产生了许多有吸引力的特性和应用。在这篇综述中,我们总结了胶体板状金属纳米粒子(包括等离子体金属和其他金属)在溶液相生长方面的最新进展,重点介绍了不同合成策略的机制见解、不同金属的结晶习性以及纳米板作为其他衍生结构合成的支架的用途。我们还强调了代表性的自组装技术,并简要概述了得益于 2D 形态的有吸引力的特性和独特的多功能性。最后,我们分享了对板状金属纳米材料现有挑战和未来展望的看法。