Diaz Javier, Pinna Marco, Zvelindovsky Andrei, Pagonabarraga Ignacio
CECAM, Centre Européen de Calcul Atomique et Moléculaire, EPFL, École Polytechnique Fédérale de Lausanne, Batochime - Avenue Forel 2, 1015 Lausanne, Switzerland.
Centre for Computational Physics, University of Lincoln, Brayford Pool, Lincoln, LN6 7TS, UK.
Soft Matter. 2022 May 18;18(19):3638-3643. doi: 10.1039/d2sm00214k.
Block copolymer nanocomposites including anisotropic nanoparticles have been previously found to co-assemble into complex structures with nanoparticle alignment. Anisotropic nanoparticles with large aspect ratios are found to modify the morphology of block copolymers at modest concentrations, inducing a sphere-to-cylinder phase transition by breaking the local symmetry in the vicinity of a solid particle. This transition takes place over a wide range of NP lengths comparable with the BCP spacing. Controlling the orientation of uniaxial nanoparticles provides additional control over the global orientation of the block copolymer, as previously reported by experiments.
先前已发现,包含各向异性纳米颗粒的嵌段共聚物纳米复合材料会共同组装成具有纳米颗粒排列的复杂结构。人们发现,具有较大纵横比的各向异性纳米颗粒在适度浓度下会改变嵌段共聚物的形态,通过打破固体颗粒附近的局部对称性来诱导球-柱相转变。这种转变发生在与嵌段共聚物间距相当的很宽范围的纳米颗粒长度内。如先前实验所报道,控制单轴纳米颗粒的取向可对嵌段共聚物的整体取向提供额外控制。