Department of Bioproducts and Biosystems, Aalto University, P.O. Box 16300, FI-00076 Aalto, Finland.
Soft Matter. 2018 May 2;14(17):3387-3396. doi: 10.1039/c8sm00383a.
Wrinkling of colloidal particles alter a wide variety of interfacial properties but quantitative topographical descriptions have been explored experimentally to a very limited extent. In this study, we present a harmonic analysis of surface wrinkles and folds on submicron colloidal particles, obtained using an aerosol flow route, with small radius (<300 nm) and high crust thickness-to-radius ratio (>0.1). The particle surface coordinates were mapped in their entirety using cryo-electron tomography and subsequently reconstructed using spherical harmonics, allowing a spectral topographical description of the instability patterns and the identification of their surface modes by lateral wavelength. Wrinkled and crumpled particles showed a similar surface roughness spectrum, wherein differences were found most noticeable in the large wavelength region. The analysis of preferred directions of harmonic frequencies indicated a possible axial or planar alignment attributed to the directionality of the surface corrugations. The employed characterization methodology can further the study of topographical influences on colloidal interactions.
胶体颗粒的皱缩会改变各种界面性质,但定量的形貌描述在很大程度上仅在实验上得到了探索。在这项研究中,我们采用气溶胶流路径,使用具有小半径(<300nm)和高壳厚-半径比(>0.1)的亚微米胶体颗粒,对表面皱纹和褶皱进行了谐分析。使用低温电子断层扫描对颗粒表面坐标进行了整体映射,并使用球谐函数进行了重建,从而可以对不稳定性模式进行光谱形貌描述,并通过横向波长确定其表面模式。皱缩和起皱的颗粒显示出相似的表面粗糙度谱,其中在大波长区域发现的差异最为明显。谐频的优选方向分析表明,可能存在轴向或平面排列,这归因于表面波纹的方向性。所采用的表征方法可以进一步研究形貌对胶体相互作用的影响。