Laboratory of Advanced Materials, State Key Laboratory of Molecular Engineering of Polymers, Fudan University, Shanghai 200438, P. R. China.
Institute of Functional Nano & Soft Materials (FUNSOM), Jiangsu Key Laboratory for Carbon-Based Functional Materials & Devices, Soochow University, Suzhou 215123, Jiangsu, P. R. China.
ACS Appl Mater Interfaces. 2023 Apr 19;15(15):19300-19306. doi: 10.1021/acsami.3c01044. Epub 2023 Apr 4.
A comprehensive comparison of organic single crystals based on a single material but with different dimensions provides a unique approach to probe their carrier injection mechanism. In this report, both two-dimensional (2D) and microrod single crystals with the same crystalline structure of an identical thiopyran derivative, 7,14-dioctylnaphtho[2,1-:6,5-']bis(cyclopentane[]thiopyran) (C-SS), are grown on a glycerol surface with the space-confined method. Organic field-effect transistors (OFETs) based on the 2D C-SS single crystal exhibit superior performance compared with those based on the microrod single crystal, particularly in their contact resistance (). It is demonstrated that the resistance of the crystal bulk in the contact region plays a key role in of the OFETs. Thus, among the 30 devices tested, the microrod OFETs typically appear contact-limited, whereas the 2D OFETs possess significantly reduced arising from the tiny thickness of the 2D single crystal. The 2D OFETs show high operational stability and high channel mobility up to 5.7 cm/V·s. The elucidation of the contact behavior highlights the merits and great potential of 2D molecular single crystals in organic electronics.
对基于单一材料但具有不同维度的有机单晶进行全面比较,为探究其载流子注入机制提供了一种独特的方法。在本报告中,采用空间受限的方法,在甘油表面上生长出了具有相同晶体结构的二维(2D)单晶和微棒单晶,其晶体结构均为相同的噻吩并[2,1-b:5,4-b']二噻吩并[3,2-d]噻吩并[2,3-d]噻吩(C-SS)衍生物。基于 2D C-SS 单晶的有机场效应晶体管(OFET)的性能优于基于微棒单晶的 OFET,尤其是在接触电阻()方面。实验表明,接触区域中晶体本体的电阻在 OFET 的中起着关键作用。因此,在所测试的 30 个器件中,微棒 OFET 通常表现出接触受限,而 2D OFET 的则显著降低,这是由于 2D 单晶的厚度极小。2D OFET 表现出高的工作稳定性和高达 5.7cm/V·s 的高沟道迁移率。接触行为的阐明突出了二维分子单晶在有机电子学中的优势和巨大潜力。