Ruiz-Franco J, Marakis J, Gnan N, Kohlbrecher J, Gauthier M, Lettinga M P, Vlassopoulos D, Zaccarelli E
Dip. Di Fisica, Sapienza Università di Roma, Piazzale A. Moro 5, 00185 Rome, Italy.
Foundation for Research and Technology-Hellas (FORTH), Institute of Electronic Structure and Laser (IESL), 100 N. Plastira Street, GR-70013 Heraklion, Greece.
Phys Rev Lett. 2018 Feb 16;120(7):078003. doi: 10.1103/PhysRevLett.120.078003.
Ultrasoft colloids typically do not spontaneously crystallize, but rather vitrify, at high concentrations. Combining in situ rheo-small-angle-neutron-scattering experiments and numerical simulations we show that shear facilitates crystallization of colloidal star polymers in the vicinity of their glass transition. With increasing shear rate well beyond rheological yielding, a transition is found from an initial bcc-dominated structure to an fcc-dominated one. This crystal-to-crystal transition is not accompanied by intermediate melting but occurs via a sudden reorganization of the crystal structure. Our results provide a new avenue to tailor colloidal crystallization and the crystal-to-crystal transition at the molecular level by coupling softness and shear.
超软胶体通常不会在高浓度下自发结晶,而是发生玻璃化转变。通过结合原位流变小角中子散射实验和数值模拟,我们表明剪切作用促进了胶体星型聚合物在其玻璃化转变附近的结晶。随着剪切速率的增加,远远超过流变屈服点,发现从初始以体心立方为主的结构转变为以面心立方为主的结构。这种晶体到晶体的转变不伴随着中间熔化,而是通过晶体结构的突然重组发生。我们的结果提供了一条新途径,通过耦合柔软性和剪切作用,在分子水平上定制胶体结晶和晶体到晶体的转变。