Liu Yingxin, Stoeckel Daniela, Gordeyeva Korneliya, Agthe Michael, Schütz Christina, Fall Andreas B, Bergström Lennart
Department of Materials and Environmental Chemistry, Stockholm University, 106 91 Stockholm, Sweden.
Wallenberg Wood Science Center, KTH, 100 44 Stockholm, Sweden.
ACS Macro Lett. 2018 Feb 20;7(2):172-177. doi: 10.1021/acsmacrolett.7b00964. Epub 2018 Jan 16.
We have followed the structural evolution during evaporation-induced self-assembly of sulfonated cellulose nanocrystal (CNC) in the presence of H and Li counterions by small-angle X-ray scattering. Drying of CNC-H dispersions results in ordered films that could not be readily redispersed, while the CNC-Li films were disordered and prone to reswelling and redispersion. The scaling of the separation distance () between CNC particles and the particle concentration () shows that the CNC-H dispersions display a unidimensional contraction of the nematic structure ( ∝ ) during drying, while the CNC-Li dispersions consolidate isotropically ( ∝ ), which is characteristic for hydrogels with no preferential orientation. Temporal evolution of the structure factor and complementary dynamic light-scattering measurements show that CNC-Li is more aggregated than CNC-H during evaporation-induced assembly. Insights on the structural evolution during CNC assembly and redispersion can promote development of novel and optimized processing routes of nanocellulose-based materials.
我们通过小角X射线散射跟踪了在H和Li抗衡离子存在下,磺化纤维素纳米晶体(CNC)蒸发诱导自组装过程中的结构演变。CNC-H分散体干燥后形成有序薄膜,不易重新分散,而CNC-Li薄膜无序,易于再溶胀和重新分散。CNC颗粒之间的分离距离()与颗粒浓度()的标度关系表明,CNC-H分散体在干燥过程中呈现向列相结构的一维收缩(∝),而CNC-Li分散体各向同性地固结(∝),这是无优先取向水凝胶的特征。结构因子的时间演变和互补的动态光散射测量表明,在蒸发诱导组装过程中,CNC-Li比CNC-H更易聚集。对CNC组装和重新分散过程中结构演变的深入了解可以促进新型和优化的基于纳米纤维素材料加工路线的开发。