Beijing National Laboratory for Molecular Sciences, CAS Key Laboratory of Organic Solids, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100190, China.
Sci Rep. 2014 Jun 17;4:5331. doi: 10.1038/srep05331.
Organic thin film photoconductors (OTFPs) are expected to have wide applications in the field of optical communications, artificial vision and biomedical sensing due to their great advantages of high flexibility and low-cost large-area fabrication. However, their performances are not satisfactory at present: the value of responsivity (R), the parameter that measures the sensitivity of a photoconductor to light, is below 1 AW(-1). We believe such poor performance is resulted from an intrinsic self-limited effect of present bare blend based device structure. Here we designed a PIN architecture for OTFPs, the PIN device exhibits a significantly improved high R value of 96.5 AW(-1). The PIN architecture and the performance the PIN device shows here should represent an important step in the development of OTFPs.
有机薄膜光电导探测器(OTFPs)由于其高柔韧性和低成本大面积制造的巨大优势,有望在光通信、人工视觉和生物医学传感等领域得到广泛应用。然而,它们的性能目前还不尽如人意:响应率(R)的值,衡量光电导对光的灵敏度的参数,低于 1 AW(-1)。我们认为,这种较差的性能是由目前裸混合器件结构的固有自限效应引起的。在这里,我们为 OTFPs 设计了一个 PIN 结构,PIN 器件表现出显著提高的高 R 值,为 96.5 AW(-1)。这里展示的 PIN 结构和 PIN 器件的性能应该代表了 OTFPs 发展的重要一步。