Department of Materials Science and Engineering , University of Maryland , College Park , Maryland 20742 , United States.
NIST Center for Neutron Research, National Institute of Standards and Technology, Gaithersburg , Maryland 20899 , United States.
Langmuir. 2018 Jul 10;34(27):8042-8051. doi: 10.1021/acs.langmuir.8b01452. Epub 2018 Jun 29.
Isotropic-nematic (I-N) transitions in cellulose nanocrystal (CNC) suspension and self-assembled structures in the isotropic and nematic phases were investigated using scattering and microscopy methods. A CNC suspension with a mass fraction of 7.4% spontaneously phase separated into an isotropic phase of 6.9% in the top layer and a nematic phase of 7.9% in the bottom layer. In both the phases, the CNC particles formed stacks with an interparticle distance being of ≈37 nm. One-dimensional small-angle neutron scattering (SANS) profiles due to both phases could be fitted using a stacking model considering finite particle sizes. SANS and atomic force microscopy studies indicate that the nematic phase in the bottom layer contains more populations of larger particles. A weak magnetic field of ≈0.5 T was able to induce a preferred orientation of CNC stacks in the nematic phase, with the stack normals being aligned with the field (perpendicular to the long axis of CNC particles). The Hermans orientation parameter, ⟨ P⟩, was ≈0.5 for the nematic phase; it remained unchanged during the relaxation process of ≈10 h. The fraction of oriented CNC populations decreased during the relaxation; dramatic decrease occurred in the first 3 h. The top layer remained isotropic in the weak field. Polarized microscopy studies revealed that the nematic phase was chiral. Adjacent particles in a stack form a twisting angle of ≈0.6 °, resulting in a helix pitch distance of ≈22 μm.
使用散射和显微镜方法研究了纤维素纳米晶体(CNC)悬浮液中的各向同性-向列(I-N)转变和各向同性相和向列相中的自组装结构。质量分数为 7.4%的 CNC 悬浮液自发地分相为上层的各向同性相(质量分数为 6.9%)和下层的向列相(质量分数为 7.9%)。在这两个相中,CNC 颗粒都形成了层间距约为 37nm 的堆叠。考虑到有限的颗粒尺寸,两个相的一维小角中子散射(SANS)谱可以用堆叠模型拟合。SANS 和原子力显微镜研究表明,下层的向列相中含有更多的大颗粒。约 0.5T 的弱磁场能够诱导向列相中 CNC 堆叠的择优取向,堆叠法线与磁场平行(垂直于 CNC 颗粒的长轴)。向列相的 Hermans 取向参数 ⟨P⟩约为 0.5;在 ≈10 小时的弛豫过程中,它保持不变。在弛豫过程中,取向 CNC 种群的分数减少;在前 3 小时内急剧减少。弱磁场下,上层仍为各向同性。偏光显微镜研究表明,向列相具有手性。堆叠中相邻的颗粒形成 ≈0.6°的扭转角,导致螺旋节距距离约为 22μm。