论文标题
基于块状聚合物的静态和动态特性,跨非连续性跃迁的移植纳米颗粒
Static and Dynamic Properties of Block-Copolymer Based Grafted Nanoparticles Across the Non-Ergodicity Transition
论文作者
论文摘要
我们提出了对块共聚物胶束与交联核的静态和动态性能的系统研究,代表模型聚合物接枝的纳米颗粒,在较广泛的浓度范围内,从稀释状态到被捕的(结晶)状态,通过光线和中子散射,通过线性粘弹性互补。我们遵循了它们在整个非效应性转变中的散射强度和扩散动力学的演变,并且观察到的结果与适当的粗粒度Langevin动力学模拟形成了鲜明对比。这些稳定的模型软颗粒位于Ultrasoft恒星和硬球之间,众所周知的星对相互作用潜力不适合描述它们。取而代之的是,我们发现有效的刷子相互作用电位在实验和模拟之间提供了非常令人满意的一致性,从而提供了对球形胶体悬浮液中柔软性和动态相互作用的见解。
We present a systematic investigation of static and dynamic properties of block copolymer micelles with crosslinked cores, representing model polymer-grafted nanoparticles, over a wide concentration range from dilute regime to an arrested (crystalline) state, by means of light and neutron scattering, complemented by linear viscoelasticity. We have followed the evolution of their scattering intensity and diffusion dynamics throughout the non-ergodicity transition and the observed results have been contrasted against appropriately coarse-grained Langevin Dynamics simulations. These stable model soft particles of the core-shell type are situated between ultrasoft stars and hard spheres, and the well-known star pair interaction potential is not appropriate to describe them. Instead, we have found that an effective brush interaction potential provides very satisfactory agreement between experiments and simulations, offering insights into the interplay of softness and dynamics in spherical colloidal suspensions.