Liu Shuhong, Wang Wechung Maria, Mannsfeld Stefan C B, Locklin Jason, Erk Peter, Gomez Marcos, Richter Frauke, Bao Zhenan
Department of Chemical Engineering, Stanford University, Stanford, California 94305, USA.
Langmuir. 2007 Jul 3;23(14):7428-32. doi: 10.1021/la700493p. Epub 2007 Jun 5.
Two efficient approaches to assembling organic semiconducting single crystals are described. The methods rely on solvent wetting and dewetting on substrates with patterned wettability to selectively direct the deposition or removal of organic crystals. Substrates were functionalized with different self-assembled monolayers (SAMs) to achieve the desired wettabilities. The assembly of different organic crystals over centimeter-squared areas on Au, SiO2, and flexible plastic substrates was demonstrated. By designing line features on the substrate, the alignment of crystals, such as CuPc needles, was also achieved. As a demonstration of the potential application of this assembly approach, arrays of single-crystal organic field-effect transistors were fabricated by patterning organic single crystals directly onto and between transistor source and drain electrodes.
本文描述了两种用于组装有机半导体单晶的有效方法。这些方法依赖于在具有图案化润湿性的基底上进行溶剂润湿和去湿,以选择性地引导有机晶体的沉积或去除。通过不同的自组装单分子层(SAMs)对基底进行功能化处理,以实现所需的润湿性。在金、二氧化硅和柔性塑料基底上,展示了在平方厘米区域内组装不同有机晶体的过程。通过在基底上设计线条特征,还实现了晶体(如酞菁铜针状晶体)的排列。作为这种组装方法潜在应用的一个示例,通过将有机单晶直接图案化到晶体管源极和漏极电极上及其之间,制造了单晶有机场效应晶体管阵列。