Hongjian Gu, Yinglin Hu, Kaiyuan Fan, Binggang Liu, Huimin Zhou, X. Chelsea Chen, Danhui Wang, Yousi Chen, Cheng Liu, Yuxi Pan, Ce Song, Xigao Jian
High Resolution Image Download MS PowerPoint Slide This study synthesized 4,4′-(sulfonylbis(4,1-phenylene))bis(phthalazin-1(2H)-one) via an efficient three-step method and subsequently prepared amorphous poly(sulfone-type bisphthalazinone sulfone ketone)s (PSUPSKs). PSUPSKs exhibit glass transition temperatures ranging from 346 to 372 °C, with a 5% weight loss temperature exceeding 500 °C. PSUPSKs possess excellent solubility and can be solution-processed into cast films, electrospun nanofibers, and coatings. PSUPSK sheets exhibit superior mechanical properties and excellent high- and low-temperature resistance at 300 and −60 °C, respectively. Additionally, these materials show excellent thermal and environmental aging properties at 300 °C, as well as inherent flame retardancy with a UL-94 V-0 rating. Solution-impregnated CF/PSUPSK composites demonstrate exceptional mechanical performance, with flexural strengths of 1368–1510 MPa, while retaining 64.8–81.4% of their flexural strength at 300 °C and 19.1–54.3% at 330 °C. Moreover, the composites enable efficient carbon fiber recovery and resin recycling via mild solvent dissolution. PSUPSKs show great potential for 5G substrates, new energy vehicles, and aerospace applications.