共晶
晶体工程
分子间力
三元运算
Crystal(编程语言)
机械合成
材料科学
化学
计算化学
超分子化学
有机化学
计算机科学
球磨机
分子
复合材料
氢键
程序设计语言
作者
Zi Xuan Ng,Davin Tan,Wei Liang Teo,Félix León,Xiaoyan Shi,Ying Sim,Yongxin Li,Rakesh Ganguly,Yanli Zhao,Sharmarke Mohamed,Felipe Garcı́a
标识
DOI:10.1002/ange.202101248
摘要
Abstract The ability to rationally design and predictably construct crystalline solids has been the hallmark of crystal engineering research. To date, numerous examples of multicomponent crystals comprising organic molecules have been reported. However, the crystal engineering of cocrystals comprising both organic and inorganic chemical units is still poorly understood and mostly unexplored. Here, we report a new diverse set of higher‐order cocrystals (HOCs) based on the structurally versatile—yet largely unexplored—phosph(V/V)azane heterosynthon building block. The novel ternary and quaternary cocrystals reported are held together by synergistic and orthogonal intermolecular interactions. Notably, the HOCs can be readily obtained either via sequential or one‐pot mechanochemical methods. Computational modelling methods reveal that the HOCs are thermodynamically driven to form and that their mechanical properties strongly depend on the composition and intermolecular forces in the crystal, offering untapped potential for optimizing material properties.
科研通智能强力驱动
Strongly Powered by AbleSci AI