Liu Meng-Yao, Wang Jian, Yang Kai-Xuan, Liu Ming, Zhao Zi-Jin, Zhang Fu-Jun
School of Science, Beijing Jiaotong University, 100044, Beijing, China.
College of Physics and Electronic Engineering, Taishan University, 271000, Taian, Shandong, China.
Phys Chem Chem Phys. 2021 Feb 4;23(4):2923-2929. doi: 10.1039/d0cp05811d.
Broadband photomultiplication organic photodetectors (PMOPDs) can be achieved with a double-layered active layer prepared from IEICO-4F : PBDB-T blend solutions with different weight ratios (1 : 1 or 3 : 100, wt/wt). The response range of the double-layered PMOPDs covers from 310 nm to 930 nm, determined by the photon harvesting range of the IEICO-4F : PBDB-T (1 : 1, wt/wt) layer. The IEICO-4F : PBDB-T (3 : 100, wt/wt) layer was used as a PM layer in the double-layered PMOPDs, achieving external quantum efficiency (EQE) more than 100% based on the work mechanism of trap-assisted hole tunneling injection. The trapped electrons in PBDB-T/IEICO-4F/PBDB-T near the Al electrode will makeinterfacial-band-bending to narrow the injection barrier, resulting in hole-tunneling-injection from the external circuit. The polymer PBDB-T can provide an efficient charge transport channel for the injected hole from the external circuit. The specific detectivity (D*) and responsivity (R) of the double-layered PMOPDs are 1.05 ± 0.03 × 1012 Jones and 0.94 ± 0.03 A W-1 at 810 nm under a -10 V bias, respectively.
宽带光倍增有机光电探测器(PMOPD)可通过由不同重量比(1:1或3:100,重量/重量)的IEICO-4F:PBDB-T混合溶液制备的双层有源层来实现。双层PMOPD的响应范围覆盖310纳米至930纳米,这由IEICO-4F:PBDB-T(1:1,重量/重量)层的光子收集范围决定。在双层PMOPD中,IEICO-4F:PBDB-T(3:100,重量/重量)层用作PM层,基于陷阱辅助空穴隧穿注入的工作机制,实现了超过100%的外量子效率(EQE)。靠近铝电极的PBDB-T/IEICO-4F/PBDB-T中的俘获电子将使界面能带弯曲,从而缩小注入势垒,导致空穴从外部电路隧穿注入。聚合物PBDB-T可以为从外部电路注入的空穴提供有效的电荷传输通道。在-10V偏压下,双层PMOPD在810纳米处的比探测率(D*)和响应度(R)分别为1.05±0.03×1012琼斯和0.94±0.03 A W-1。