Gao Huimin, Zhao Li, Liu Kun, Lu Zhong-Yuan
State Key Laboratory of Supramolecular Structure and Materials, College of Chemistry, Jilin University, Changchun 130012, China.
School of Mathematics, Jilin University, Changchun 130012, China.
J Phys Chem Lett. 2021 Mar 11;12(9):2340-2347. doi: 10.1021/acs.jpclett.1c00243. Epub 2021 Mar 3.
In situ polymerization of preorganized amphiphilic monomers on various substrates provides a flexible synthetic route to construct high-quality two-dimensional polymers (2DPs) with designed functionalities. However, the detailed polymerization kinetics of these monomers in 2D confinement and their impact on the structural features of 2DPs have not been efficiently explored. Here, using dissipative particle dynamics (DPD) simulations, we unveil the similarity of the polymerization kinetics of the amphiphilic Gemini molecules in both a 2D-confined space and solution and emphasize the key role of the initiator concentration in modifying the morphology of 2DPs. More interestingly, introducing a spacer group into the Gemini monomer facilitates the formation of porous 2DPs. The size and periodic arrangement of pores in these 2DPs could be directly controlled by the Gemini molecular geometries and polymerization kinetics. The insights based on our DPD simulations provide valuable guidelines for the rational design and synthesis of 2DPs from a wider range of amphiphilic molecules.
在各种基底上对预组织的两亲性单体进行原位聚合,为构建具有设计功能的高质量二维聚合物(2DPs)提供了一条灵活的合成途径。然而,这些单体在二维受限环境中的详细聚合动力学及其对2DPs结构特征的影响尚未得到有效探索。在此,我们使用耗散粒子动力学(DPD)模拟,揭示了两亲性 Gemini 分子在二维受限空间和溶液中的聚合动力学的相似性,并强调了引发剂浓度在改变 2DPs 形态方面的关键作用。更有趣的是,在 Gemini 单体中引入间隔基团有助于形成多孔 2DPs。这些 2DPs 中孔的尺寸和周期性排列可以通过 Gemini 分子几何结构和聚合动力学直接控制。基于我们的 DPD 模拟得出的见解为从更广泛的两亲性分子合理设计和合成 2DPs 提供了有价值的指导。