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纤维素表面之间的摩擦以及木葡聚糖吸附的影响。

Friction between cellulose surfaces and effect of xyloglucan adsorption.

作者信息

Stiernstedt Johanna, Brumer Harry, Zhou Qi, Teeri Tuula T, Rutland Mark W

机构信息

Department of Chemistry, Surface Chemistry, Royal Institute of Technology, SE-100 44 Stockholm, Sweden.

出版信息

Biomacromolecules. 2006 Jul;7(7):2147-53. doi: 10.1021/bm060100i.

Abstract

The forces and friction between cellulose spheres have been measured in the absence and presence of xyloglucan using an atomic force microscope. The forces between cellulose are monotonically repulsive with negligible adhesion after contact is achieved. The friction coefficient is observed to be unusually high in comparison with other nanotribological systems. We have confirmed that xyloglucan adsorbs strongly to cellulose, which results in a much stronger adhesion, which is dependent on the time the surfaces are in contact. Xyloglucan also increases the repulsion on approach of the cellulose surfaces, and the friction is markedly reduced. The apparently incompatible observations of decreased friction in combination with increased adhesion fulfills many of the necessary criteria for a papermaking additive.

摘要

利用原子力显微镜,在不存在和存在木葡聚糖的情况下,测量了纤维素球体之间的力和摩擦力。纤维素之间的力在接触后呈单调排斥,粘附力可忽略不计。与其他纳米摩擦学系统相比,观察到摩擦系数异常高。我们已经证实木葡聚糖强烈吸附在纤维素上,这导致更强的粘附力,其取决于表面接触的时间。木葡聚糖还增加了纤维素表面靠近时的排斥力,并且摩擦力显著降低。摩擦力降低与粘附力增加这一明显矛盾的观察结果满足了造纸添加剂的许多必要标准。

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