Moradi Mohammad-Amin, Larrakoetxea Angoitia Katalin, van Berkel Stefan, Gnanasekaran Karthikeyan, Friedrich Heiner, Heuts Johan P A, van der Schoot Paul, van Herk Alex M
Polymer Technology Group Eindhoven B.V. (PTG/e), P.O. Box 6284, 5600 HG, Eindhoven, The Netherlands.
Institute for Theoretical Physics, Utrecht University , Leuvenlaan 4, 3584 CE Utrecht, The Netherlands.
Langmuir. 2015 Nov 10;31(44):11982-8. doi: 10.1021/acs.langmuir.5b02756. Epub 2015 Oct 30.
We synthesize two differently sized poly(methyl methacrylate-co-tert-butyl acrylate) latexes by emulsion polymerization and mix these with a sonicated single-walled carbon nanotube (SWCNT) dispersion, in order to prepare 3% SWCNT composite mixtures. We spin-coat these mixtures at various spin-speed rates and spin times over a glass substrate, producing a thin, transparent, solid, conductive layer. Keeping the amount of SWCNTs constant, we vary the weight fraction of our smaller 30-nm latex particles relative to the larger 70-nm-sized ones. We find a maximum in the electrical conductivity up to 370 S/m as a function of the weight fraction of smaller particles, depending on the overall solid content, the spin speed, and the spin time. This maximum occurs at 3-5% of the smaller latex particles. We also find a more than 2-fold increase in conductivity parallel to the radius of spin-coating than perpendicular to it. Atomic force microscopy points at the existence of lanes of latex particles in the spin-coated thin layer, while large-area transmission electron microscopy demonstrates that the SWCNTs are aligned over a grid fixed on the glass substrate during the spin-coating process. We extract the conductivity distribution on the surface of the thin film and translate this into the direction of the SWCNTs in it.
我们通过乳液聚合合成了两种不同尺寸的聚(甲基丙烯酸甲酯 - 丙烯酸叔丁酯)胶乳,并将它们与经过超声处理的单壁碳纳米管(SWCNT)分散体混合,以制备3%的SWCNT复合混合物。我们在玻璃基板上以不同的转速和旋转时间旋涂这些混合物,从而形成一层薄的、透明的、固态的导电层。在保持SWCNT含量不变的情况下,我们改变较小的30纳米胶乳颗粒相对于较大的70纳米尺寸颗粒的重量分数。我们发现,根据总体固体含量、转速和旋转时间,电导率作为较小颗粒重量分数的函数,在高达370 S/m时出现最大值。该最大值出现在较小胶乳颗粒占3 - 5%时。我们还发现,与旋涂半径平行方向的电导率比垂直方向增加了两倍多。原子力显微镜显示在旋涂薄层中存在胶乳颗粒条带,而大面积透射电子显微镜表明在旋涂过程中SWCNT在固定于玻璃基板上的网格上排列。我们提取薄膜表面的电导率分布,并将其转化为其中SWCNT的方向。