Bodiuzzaman Mohammad, Dar Wakeel Ahmed, Pradeep Thalappil
Department of Chemistry, DST Unit of Nanoscience and Thematic Unit of Excellence, Indian Institute of Technology Madras, Chennai, 600036, India.
Small. 2021 Jul;17(27):e2003981. doi: 10.1002/smll.202003981. Epub 2020 Nov 13.
Cocrystallization is a phenomenon involving the assembly of two or more different chemical entities in a lattice, occurring typically through supramolecular interactions. In this concept, recent advancements in the cocrystallization of atomically precise noble metal clusters and their potential future directions are presented. Different strategies to create coassemblies of thiolate-protected noble metal nanoclusters are presented first. An approach is the simultaneous synthesis, and cocrystallization of two clusters having similar structures. A unique pair of clusters found recently, namely Ag and Ag with same core but different shell are taken to illustrate this. In another category, the case of the same core is presented, namely Ag with different shells, as in a mixture of Ag and Ag . Next, an intercluster reaction is presented to create cocrystals through selective crystallization of the reaction products. The coexistence of competing effects, magic sizes, and magic electron shells in a coassembly of alloy nanoclusters is discussed next. Finally, an assembly strategy for nanoclusters using electrostatic interactions is described. This concept is concluded with a future perspective on the emerging possibilities of such solids. Advancements in this field will certainly help the development of novel materials with exciting properties.
共结晶是一种在晶格中涉及两种或更多不同化学实体组装的现象,通常通过超分子相互作用发生。在这一概念中,介绍了原子精确的贵金属簇共结晶的最新进展及其潜在的未来方向。首先介绍了创建硫醇盐保护的贵金属纳米簇共组装体的不同策略。一种方法是同时合成具有相似结构的两个簇并使其共结晶。最近发现的一对独特的簇,即具有相同核心但不同外壳的Ag和Ag,用于说明这一点。在另一类中,呈现了相同核心的情况,即具有不同外壳的Ag,如Ag和Ag的混合物。接下来,介绍了一种簇间反应,通过反应产物的选择性结晶来创建共晶体。随后讨论了合金纳米簇共组装体中竞争效应、幻数尺寸和幻数电子壳层的共存。最后,描述了一种利用静电相互作用的纳米簇组装策略。这一概念以对这类固体新兴可能性的未来展望作为结尾。该领域的进展必将有助于开发具有令人兴奋特性的新型材料。