School of Electronic Science and Engineering (National Model Microelectronics College), Xiamen University, Xiamen, 361005, China.
Key Laboratory of Functional Inorganic Material Chemistry, Ministry of Education, School of Chemistry and Material Science, Heilongjiang University, Harbin, 150080, China.
Small Methods. 2023 Apr;7(4):e2201366. doi: 10.1002/smtd.202201366. Epub 2023 Jan 26.
Based on the molecular energy transfer mechanism, relative gains at 1067 and 637 nm wavelengths are achieved in thermally activated delayed fluorescence molecule AQ(PhDPA) and Nd complex with chelating phosphine oxide as ligands codoped polymer waveguides, with the excitation of low-power UV light-emitting diodes (LEDs) instead of traditional semiconductor lasers as pump sources. For AQ(PhDPA) -Nd(DBTTA) (DBFDPO) (DBTTA = dibenzotetrathienoacene, DBFDPO = 4,6-bis (diphenylphosphoryl) dibenzofuran) -codoped polymethylmethacrylate (PMMA), and AQ(PhDPA) -Nd(DBTTA) (FDPO) (FDPO = 9,9-bis (diphenylphosphorylphenyl) fluorene)-codoped PMMA polymers with a mass ratio of 1:4 respectively, when they are spin-coated as upper claddings, the relative gains of 2.2 and 1.8 dB cm at 1067 nm are obtained in evanescent-field waveguides with cross-section of 4 × 8 µm under excitation of 300 mW 405 nm LED, and the gains of 3.9 and 4.9 dB cm at 637 nm are achieved with pumping of 530 mW 450 nm LED respectively. By growing a 100 nm-thick aluminum reflector with the waveguides, the optical gain at 1067 and 637 nm can be enhanced to 3.5 and 6.1 dB cm , corresponding to AQ(PhDPA) -Nd(DBTTA) (DBFDPO) and AQ(PhDPA) -Nd(DBTTA) (FDPO)-codoped PMMA polymers, respectively.
基于分子能量转移机制,在热激活延迟荧光分子 AQ(PhDPA)和 Nd 配合物掺杂聚合物波导中,实现了在 1067nm 和 637nm 波长下的相对增益,该配合物的配体为膦氧螯合二苯并噻吩,并使用低功率紫外发光二极管(LED)代替传统半导体激光器作为泵浦源。对于 AQ(PhDPA)-Nd(DBTTA)(DBFDPO)(DBTTA=二苯并噻吩并[3,2-b:2′,3′-d]噻吩,DBFDPO=4,6-双(二苯基膦基)二苯并呋喃)共掺杂聚甲基丙烯酸甲酯(PMMA)和 AQ(PhDPA)-Nd(DBTTA)(FDPO)(FDPO=9,9-双(二苯基膦基)芴)-共掺杂 PMMA 聚合物,当它们以质量比 1:4 分别旋涂为上包层时,在截面为 4×8µm 的消逝场波导中,在 300mW 405nm LED 激发下,获得了 1067nm 处 2.2dB cm 和 637nm 处 1.8dB cm 的相对增益,在 530mW 450nm LED 泵浦下,获得了 637nm 处 3.9dB cm 和 4.9dB cm 的增益。通过在波导上生长 100nm 厚的铝反射镜,可以将 1067nm 和 637nm 的光增益增强到 3.5dB cm 和 6.1dB cm,分别对应于 AQ(PhDPA)-Nd(DBTTA)(DBFDPO)和 AQ(PhDPA)-Nd(DBTTA)(FDPO)共掺杂 PMMA 聚合物。