专利号:US-8329769-B2 优先权日:2009-12-10 标题:Facile synthesis of microporous triple-bond based polymer networks using acetylene gas as a building unit 发明人:KANG JEUNG-KU; CHOI JUNG-HOON; CHOI KYUNG-MIN; JEON HYUNG-JOON; CHOI YOON-JEONG; LEE YEOB 权利人:KANG JEUNG-KU; CHOI JUNG-HOON; CHOI KYUNG-MIN; JEON HYUNG-JOON; CHOI YOON-JEONG; LEE YEOB; KOREA ADVANCED INST SCI & TECH 摘要:Disclosed is a method for synthesis of micro-porous triple-bond based polymer networks using acetylene gas. According to the disclosed methods for synthesis of micro-porous triple-bond based polymer networks, acetylene gas interconnects building units having iodine and/or bromine functional groups by coupling reactions to provide micro-porous triple-bond based polymer networks.
专利号:US-2011152393-A1 优先权日:2009-12-10 标题 :Facile Synthesis of Microporous Triple-Bond Based Polymer Networks Using Acetylene Gas as a Building Unit
专利号:US-8410185-B2 优先权日:2007-06-28 标题:Porous polymeric materials for hydrogen storage 发明人:YU LUPING; LIU DI-JIA; YUAN SHENGWEN; YANG JUNBING 权利人:YU LUPING; LIU DI-JIA; YUAN SHENGWEN; YANG JUNBING; UCHICAGO ARGONNE LLC 摘要:A porous polymer, poly-9,9′-spirobifluorene and its derivatives for storage of H 2 are prepared through a chemical synthesis method. The porous polymers have high specific surface area and narrow pore size distribution. Hydrogen uptake measurements conducted for these polymers determined a higher hydrogen storage capacity at the ambient temperature over that of the benchmark materials. The method of preparing such polymers, includes oxidatively activating solids by CO 2 /steam oxidation and supercritical water treatment.
专利号:CN-119241459-A 优先权日:2024-09-03 标题:Benzo (A) benzo (B) benzo (A oxazole/benzo Synthesis method of thiazole compound
参考文献:10.1021/ol0163474 摘要:Rathore R, Burns CL, Deselnicu MI. Multiple-electron transfer in a single step. Design and synthesis of highly charged cation-radical salts. Org Lett. 2001 Sep 06;3(18):2887–90. doi: 10.1021/ol0163474. 参考文献:10.2116/analsci.21p279 摘要:Han X, Yu W, Zhang L, Li H, Kong F, Wang W. Carboxyl-functionalized porous aromatic framework for rapid, selective and efficient removal of cationic pollutants from water. Anal Sci. 2022 Feb;38(2):383–92. doi: 10.2116/analsci.21p279.