Résumé
Macromolecules 2019, 52, 16, 6336-6337 In our previous publication (Ref. 1) we have shown that the data for the normalized diffusion coefficient of the polymers,$D_p/D_{p0}$ , falls on a master curve when plotted as a function of$h/\lambda_d$ , where$h$is the mean interparticle distance and$\lambda_d$is a dynamic length scale. In the present note we show that also the normalized diffusion coefficient of the nanoparticles,$D_N/D_{N0}$ , collapses on a master curve when plotted as a function of$h/R_h$ , where$R_h$is the hydrodynamic radius of the nanoparticles.