Laboratory for Molecular Surfaces and Nanotechnology (LAMSUN), Department of Chemistry, University of Catania and CSGI, Catania, Italy.
Langmuir. 2012 Mar 20;28(11):5257-66. doi: 10.1021/la300229u. Epub 2012 Mar 6.
The nanostructure of thermally annealed thin films of poly(3-hexylthiophene) (P3HT) and [6,6]-phenyl-C61-butyric acid methyl ester (PCBM) blends on hydrophobic and hydrophilic substrates was studied to unravel the relationship between the substrate properties and the phase structure of polymer blends in confined geometry. Indeed, the nature of the employed substrates was found to affect the extent of phase separation, the PCBM aggregation state and the texture of the whole system. In particular, annealing below the melting temperature of the polymer yielded the formation of PCBM nanometric crystallites on the hydrophobic substrates, while mostly amorphous microscopic aggregates were formed on the hydrophilic ones. Moreover, while an enhanced in-plane orientation of P3HT lamellae was promoted on hydrophobic substrates, a markedly tilted geometry was produced on the hydrophilic ones. The observed effects were interpreted in terms of a simple model connecting the interface free energy for the blend films to the different polymer chain mobility and diffusion velocity of PCBM molecules on the different substrates.
研究了热退火的聚(3-己基噻吩)(P3HT)和[6,6]-苯基-C61-丁酸甲酯(PCBM)薄膜在疏水和亲水基底上的纳米结构,以揭示基底性质和受限几何形状下聚合物共混物的相结构之间的关系。事实上,所使用的基底的性质被发现会影响相分离的程度、PCBM 聚集态和整个系统的织构。特别是,在低于聚合物熔融温度的条件下退火,会在疏水基底上形成 PCBM 的纳米级晶畴,而在亲水基底上则主要形成非晶态的微观聚集体。此外,虽然在疏水基底上促进了 P3HT 片层的面内取向,但在亲水基底上则产生了明显倾斜的几何形状。观察到的效应可以用一个简单的模型来解释,该模型将共混膜的界面自由能与不同基底上聚合物链的迁移率和 PCBM 分子的扩散速度联系起来。