Ding Qiuyue, Yang Fuyu, Tian Quanchi, Xu Chao, Qu Lunjun, Wang Kaiti, Yang Chaolong
School of Materials Science and Engineering, Chongqing University of Technology, No. 69 Hongguang Avenue, Banan District, Chongqing, 400054, P. R. China.
Chemistry. 2025 Jun 3;31(31):e202501038. doi: 10.1002/chem.202501038. Epub 2025 Apr 29.
Organic polymers possessing excited-state intramolecular proton transfer (ESIPT) significantly impact their electronic and optical properties through stimulus response, leading to unique photoluminescence behaviors such as large Stokes shifts, dual emission, and environmental sensitivity. In this work, polyimides (PIs) exhibiting both ESIPT and room-temperature phosphorescence (RTP) properties were designed and synthesized by end-capping with 5-amino-2-(2-hydroxyphenyl) benzothiazole (HBTA) and 5-amino-2-(2-hydroxyphenyl) benzimidazole (HBIA), respectively. HBTA-PI and HBIA-PI exhibit bright yellow-green and sky-blue fluorescence at 510 nm and 470 nm, with a relatively high photoluminescence quantum yields of about 27.2% and 25.1%, respectively. Importantly, HBTA-PI and HBIA-PI show excellent RTP emissions at 520 nm and 485 nm, with decay lifetimes of 76.5 ms and 53.2 ms. The theoretical results indicate that the effective and large spin-orbit coupling (SOC) constants from their keto forms in the excited state can enhance the intersystem crossing (ISC) process to produce triplet excitons. The rigid polyimide networks further inhibit the nonradiative decay of triplet excitons and enhance phosphorescence emission. Additionally, the excellent ESIPT properties of HBTA-PI and HBIA-PI enable the detection of HCl vapor, which induces multiple fluorescent and phosphorescent color changes. This work provides good examples of polyimides for organic polymers with ESIPT properties and multi-stimulus response emissions.
具有激发态分子内质子转移(ESIPT)的有机聚合物通过刺激响应显著影响其电子和光学性质,导致独特的光致发光行为,如大斯托克斯位移、双发射和环境敏感性。在这项工作中,分别通过用5-氨基-2-(2-羟基苯基)苯并噻唑(HBTA)和5-氨基-2-(2-羟基苯基)苯并咪唑(HBIA)封端来设计和合成同时具有ESIPT和室温磷光(RTP)性质的聚酰亚胺(PI)。HBTA-PI和HBIA-PI在510nm和470nm处分别呈现亮黄绿色和天蓝色荧光,相对较高的光致发光量子产率分别约为27.2%和25.1%。重要的是,HBTA-PI和HBIA-PI在520nm和485nm处表现出优异的RTP发射,衰减寿命分别为76.5ms和53.2ms。理论结果表明,它们在激发态的酮形式具有有效且大的自旋-轨道耦合(SOC)常数,可以增强系间窜越(ISC)过程以产生三重态激子。刚性聚酰亚胺网络进一步抑制三重态激子的非辐射衰减并增强磷光发射。此外,HBTA-PI和HBIA-PI优异的ESIPT性质使得能够检测HCl蒸气,其会引起多种荧光和磷光颜色变化。这项工作为具有ESIPT性质和多刺激响应发射的有机聚合物聚酰亚胺提供了很好的例子。