Fan Qingrui, Li Linhai, Xue Han, Zhou Heng, Zhao Lishan, Liu Jie, Mao Junqiang, Wu Shuwang, Zhang Shizhong, Wu Chenyang, Li Xueming, Zhou Xin, Wang Jianjun
Key Laboratory of Green Printing, Beijing National Laboratory for Molecular Science, Institute of Chemistry, Chinese Academy of Sciences, Beijing, 100190, China.
University of Chinese Academy of Sciences, Beijing, 100190, China.
Angew Chem Int Ed Engl. 2020 Aug 24;59(35):15141-15146. doi: 10.1002/anie.202003922. Epub 2020 Jun 17.
It has been long-pursued but remains a challenge to precisely manipulate the molecular assembly process to obtain desired functional structures. Reported here is the control over the assembly of solute molecules, by a programmed recrystallization of solvent crystal grains, to form micro/nanoparticles with tunable sizes and crystalline forms. A quantitative correlation between the protocol of recrystallization temperature and the assembly kinetics results in precise control over the size of assembled particles, ranging from single-atom catalysts, pure drug nanoparticles, to sub-millimeter organic-semiconductor single crystals. The extensive regulation of the assembly rates leads to the unique and powerful capability of tuning the stacking of molecules, involving the formation of single crystals of notoriously crystallization-resistant molecules and amorphous structures of molecules with a very high propensity to crystallize, which endows it with wide-ranging applications.
精确控制分子组装过程以获得所需的功能结构一直是人们长期追求的目标,但仍然是一项挑战。本文报道了通过溶剂晶粒的程序重结晶来控制溶质分子的组装,以形成尺寸和晶型可调的微/纳米颗粒。重结晶温度方案与组装动力学之间的定量相关性导致对组装颗粒尺寸的精确控制,范围从单原子催化剂、纯药物纳米颗粒到亚毫米级有机半导体单晶。组装速率的广泛调节导致了调节分子堆积的独特而强大的能力,包括形成极难结晶的分子的单晶和极易结晶的分子的无定形结构,这赋予了它广泛的应用。