纳米晶
化学
自组装
硫系化合物
配体(生物化学)
分散性
纳米技术
胶体
分子
表面改性
分子工程
结晶学
高分子化学
材料科学
有机化学
生物化学
受体
物理化学
作者
Benjamin T. Diroll,Davit Jishkariani,Matteo Cargnello,Christopher B. Murray,Bertrand Donnio
摘要
Hydrophobic colloidal nanocrystals are typically synthesized and manipulated with commercially available ligands, and surface functionalization is therefore typically limited to a small number of molecules. Here, we report the use of polycatenar ligands derived from polyalkylbenzoates for the direct synthesis of metallic, chalcogenide, pnictide, and oxide nanocrystals. Polycatenar molecules, branched structures bearing diverging chains in which the terminal substitution pattern, functionality, and binding group can be independently modified, offer a modular platform for the development of ligands with targeted properties. Not only are these ligands used for the direct synthesis of monodisperse nanocrystals, but nanocrystals coated with polycatenar ligands self-assemble into softer bcc superlattices that deviate from conventional harder close-packed structures (fcc or hcp) formed by the same nanocrystals coated with commercial ligands. Self-assembly experiments demonstrate that the molecular structure of polycatenar ligands encodes interparticle spacings and attractions, engineering self-assembly, which is tunable from hard sphere to soft sphere behavior.
科研通智能强力驱动
Strongly Powered by AbleSci AI