Veen Sandra J, Versluis Peter, Kuijk Anke, Velikov Krassimir P
Unilever R&D Vlaardingen, Olivier van Noortlaan 120, 3133 AT Vlaardingen, The Netherlands.
Soft Matter. 2015 Dec 14;11(46):8907-12. doi: 10.1039/c5sm02086g. Epub 2015 Oct 5.
By using an adsorbing polymer in combination with mechanical de-agglomeration, the microstructure and rheological properties of networks of microfibrils could be controlled. By the addition of sodium carboxymethyl cellulose during de-agglomeration of networks of bacterial cellulose, the microstructure could be changed from an inhomogeneous network with bundles of microfibrils and voids to a more homogeneous spread and alignment of the particles. As a result the macroscopic rheological properties were altered. Although still elastic and gel-like in nature, the elasticity and viscous behavior of the network as a function of microfibril concentration is altered. The microstructure is thus changed by changing the surface properties of the building blocks leading to a direct influence on the materials macroscopic behavior.
通过将吸附性聚合物与机械解聚相结合,可以控制微纤丝网络的微观结构和流变特性。在细菌纤维素网络解聚过程中添加羧甲基纤维素钠,微观结构可从具有微纤丝束和空隙的不均匀网络转变为颗粒更均匀分布和排列的结构。结果,宏观流变特性发生了改变。虽然该网络本质上仍具有弹性且呈凝胶状,但其弹性和粘性行为随微纤丝浓度的变化而改变。因此,通过改变构建单元的表面性质来改变微观结构,从而直接影响材料的宏观行为。