Computer, Electrical, and Mathematical Sciences and Engineering Division, King Abdullah University of Science & Technology, Thuwal, 23955-6900, Saudi Arabia.
Department of Molecular Science and Engineering, National Taipei University of Technology, Taipei, 106, Taiwan, ROC.
Adv Mater. 2020 Jan;32(2):e1904634. doi: 10.1002/adma.201904634. Epub 2019 Nov 18.
Organic semiconductors demonstrate several advantages over conventional inorganic materials for novel electronic and optoelectronic applications, including molecularly tunable properties, flexibility, low-cost, and facile device integration. However, before organic semiconductors can be used for the next-generation devices, such as ultrafast photodetectors (PDs), it is necessary to develop new materials that feature both high mobility and ambient stability. Toward this goal, a highly stable PD based on the organic single crystal [PtBr (5,5'-bis(CF CH OCH )-2,2'-bpy)] (or "Pt complex (1o)") is demonstrated as the active semiconductor channel-a material that features a lamellar molecular structure and high-quality, intraligand charge transfer. Benefitting from its unique crystal structure, the Pt-complex (1o) device exhibits a field-effect mobility of ≈0.45 cm V s without loss of significant performance under ambient conditions even after 40 days without encapsulation, as well as immersion in distilled water for a period of 24 h. Furthermore, the device features a maximum photoresponsivity of 1 × 10 A W , a detectivity of 1.1 × 10 cm Hz W , and a record fast response/recovery time of 80/90 µs, which has never been previously achieved in other organic PDs. These findings strongly support and promote the use of the single-crystal Pt complex (1o) in next-generation organic optoelectronic devices.
有机半导体在新型电子和光电应用方面展示出优于传统无机材料的多个优势,包括分子可调特性、灵活性、低成本和易于器件集成。然而,在有机半导体可用于下一代器件(如超快光电探测器(PD))之前,有必要开发具有高迁移率和环境稳定性的新材料。为此,展示了一种基于有机单晶[PtBr(5,5'-双(CF CH OCH )-2,2'-联吡啶)](或“Pt 配合物(1o)”)的高稳定性 PD,作为活性半导体通道的材料,其具有层状分子结构和高质量的配体内电荷转移。得益于其独特的晶体结构,Pt 配合物(1o)器件在没有封装的情况下,在环境条件下甚至经过 40 天后仍具有 ≈0.45 cm V s 的场效应迁移率,而没有显著性能损失,并且在蒸馏水中浸泡 24 小时后也没有性能损失。此外,该器件具有 1×10 A W 的最大光响应率、1.1×10 cm Hz W 的探测率以及 80/90 µs 的创纪录快速响应/恢复时间,这在以前的其他有机 PD 中从未实现过。这些发现有力地支持和推动了单晶 Pt 配合物(1o)在下一代有机光电设备中的应用。