化学
成核
纳米材料
灵活性(工程)
分子
钨
聚合物
催化作用
星团(航天器)
混合材料
分子动力学
纳米技术
化学物理
计算化学
有机化学
计算机科学
材料科学
统计
数学
程序设计语言
作者
Junli Liu,Nan Liu,Hongwei Wang,Wenxiong Shi,Jing Zhuang,Xun Wang
摘要
When the size of nanomaterials reduces to the sub-1 nm scale, benefiting from size-induced mechanical flexibility and nearly 100% exposure of surface atoms, some new physical and chemical phenomena emerge, such as flexibility and polymer-like rheology. However, how to design and synthesize superflexible and high-performance hybrid sub-1 nm superstructures remains a great challenge. Herein, by incorporating four kinds of tungsten-based polyoxometallate (POM) clusters into the synthetic system of MoO3 during the nucleation step, we successfully prepared four kinds of super-flexible hybrid sub-1 nm nanobelt superstructures (HSNSs). Molecular dynamics (MD) simulations demonstrated that POM clusters interacted with MoO3 molecules and co-assembled into stable HSNSs, which could shrink, bend, curl and twist randomly in space and show super-flexible properties. These four kinds of MoO3-POM HSNSs not only performed high photothermal conversion but also showed excellent catalytic activity in the oxidation of thioethers at room temperature. This work paves the way for synthesis and broader applications of super-flexible cluster-inorganic-materials-based HSNSs.
科研通智能强力驱动
Strongly Powered by AbleSci AI