Bail Robert, Hong Ji Yoon, Chin Byung Doo
Department of Convergent Systems Engineering, Dankook University Yongin 16890 South Korea.
Department of Polymer Science and Engineering, Dankook University Yongin 16890 South Korea
RSC Adv. 2018 Mar 20;8(20):11191-11197. doi: 10.1039/c8ra00582f. eCollection 2018 Mar 16.
In this study, micropatterning of a blue light emitting, tetraphenylsilane-based phosphorescent material by inkjet printing was investigated. Bis(3,5-di(9-carbazol-9-yl))diphenylsilane (SimCP2) doped with iridium bis(4,6-difluorophenypyridinato)picolate (FIrpic) was dissolved in a solvent mixture, and various conditions for the solvent composition and drying of films were examined. Homogeneous dot and line patterns with controllable thickness and smooth surface were obtained from a mixture of chlorobenzene and cyclohexanone at a moderate printing speed of 3 mm s and a droplet ejection frequency of 70 Hz. An inkjet-printed device was designed and fabricated in [ITO/PEDOT:PSS /PVK/SimCP2:Flrpic/TSPO1/TPBi/LiF/Al] configuration, from which sky-blue light (0.14, 0.25) was obtained with a luminous efficiency of 10.73 cd A and a power efficiency of 6.13 lm W. This amounted to 68% of the performance of an identical device where the emitting layer was spin coated. These results show the potential of inkjet printing as a low-cost patterning method for low molecular weight emitters in blue light emitting devices.
在本研究中,对通过喷墨打印对基于四苯基硅烷的蓝色发光磷光材料进行微图案化进行了研究。将掺杂双(4,6-二氟苯基吡啶基)吡啶甲酸铱(FIrpic)的双(3,5-二(9-咔唑-9-基))二苯基硅烷(SimCP2)溶解在溶剂混合物中,并考察了溶剂组成和薄膜干燥的各种条件。在3毫米/秒的适中打印速度和70赫兹的液滴喷射频率下,从氯苯和环己酮的混合物中获得了具有可控厚度和光滑表面的均匀点和线图案。设计并制造了一种[ITO/PEDOT:PSS /PVK/SimCP2:Flrpic/TSPO1/TPBi/LiF/Al]结构的喷墨打印器件,从中获得了天蓝色光(0.14, 0.25),发光效率为10.73坎德拉/安培,功率效率为6.13流明/瓦。这相当于发光层采用旋涂法的相同器件性能的68%。这些结果表明喷墨打印作为一种用于蓝光发光器件中低分子量发光体的低成本图案化方法的潜力。