Organosolubility and optical transparency of novel polyimides derived from 2′,7′-bis(4-aminophenoxy)-spiro(fluorene-9,9′-xanthene)
文献信息
ShuJiang Zhang, YanFen Li, Tao Ma, JiuJiang Zhao, XiangYang Xu, FenChun Yang, Xiao-Yan Xiang
A novel spiro(fluorene-9,9′-xanthene) skeleton bis(ether amine) monomer, 2′,7′-bis(4-aminophenoxy)-spiro(fluorene-9,9′-xanthene), was prepared through a simple acid-catalyzed condensation reaction of 9-fluorenone with resorcinol to form the spiro framework through an sp3carbon atom. Subsequent nucleophilic substitution reaction of spiro[fluorene-9,9′-(2′,7′-dihydroxyxanthene)] with 1-fluoro-4-nitro-benzene in the presence of potassium carbonate in N,N-dimethylacetamide, followed by catalyticreduction with hydrazine and Pd/C in ethanol. A series of new polyimides were synthesized from the diamine with various commercially available aromatic tetracarboxylic dianhydrides via a conventional two-stage process with the thermal or chemical imidization of the poly(amic acid) precursors. Most of the polyimides obtained from both routes were soluble in many organic solvents such as N-methyl-2-pyrrolidone, N,N-dimethylacetamide and m-cresol. All the polyimides could afford transparent, flexible, and strong films with low moisture absorptions of 0.36–0.73% and low dielectric constants of 2.65–3.12 at 1 kHz. Thin films of these polyimides showed an UV-vis absorption cutoff wavelength at 352–409 nm, and those of polyimides from 4,4′-oxydiphthalic dianhydride and 2,2-bis(3,4-dicarboxyphenyl) hexafluoropropane dianhydride (6FDA) were essentially colorless. The polyimides exhibited excellent thermal stability, with decomposition temperatures (at 10% weight loss) above 510 °C in both air and nitrogen atmospheres and glass transition temperatures (Tg) in the range 296–346 °C.
相关文献
Phase-transfer dynamic combinatorial chemistry
Ruth Pérez-Fernández, Michael Pittelkow, Ana M. Belenguer, Jeremy K. M. Sanders
DOI: 10.1039/B718075F
Rational design of cationic cyclooligosaccharides as efficient gene delivery systems
Alejandro Díaz-Moscoso, Patricia Balbuena, Marta Gómez-García, Carmen Ortiz Mellet, Juan M. Benito, Loïc Le Gourriérec, Christophe Di Giorgio, Pierre Vierling, Antonino Mazzaglia, Norberto Micali, Jacques Defaye, José M. García Fernández
DOI: 10.1039/B718672J
Synthesis of metallic magnesium nanoparticles by sonoelectrochemistry
Iris Haas, Aharon Gedanken
DOI: 10.1039/B717670H
Exploring the relationship between cocrystal stability and symmetry: is Wallach's rule applicable to multi-component solids?
Tomislav Friščić, László Fábián, Jonathan C. Burley, David G. Reid, Melinda J. Duer, William Jones
DOI: 10.1039/B717532A
A new NCN pincer ruthenium complex and its catalytic activity for enantioselective hydrogenation of ketones
Jun-ichi Ito, Satoshi Ujiie, Hisao Nishiyama
DOI: 10.1039/B800387D
A practical demonstration of electronic promotion in the reduction of ceria coated PGM catalysts
Shik Chi Tsang, Stan Golunski, Paul Collier
DOI: 10.1039/B718956G
Fast energy transfer within a self-assembled cyclic porphyrin tetramer
DOI: 10.1039/B718628B
A dinuclear ruthenium(ii) complex that functions as a label-free colorimetric sensor for DNA
Veronica Gonzalez, Tom Wilson, Izumi Kurihara, Arata Imai, Jim A. Thomas, Joe Otsuki
DOI: 10.1039/B802073F
Cobalt promoted copper manganese oxide catalysts for ambient temperature carbon monoxide oxidation
Christopher Jones, Stuart H. Taylor, Andrew Burrows, Mandy J. Crudace, Christopher J. Kiely, Graham J. Hutchings
DOI: 10.1039/B800052M
Synthesis and reactivity of tetrakis(imino)pyracene (TIP) ligands; bifunctional analogues of the BIAN ligand class
Kalyan V. Vasudevan, Michael Findlater, Alan H. Cowley
DOI: 10.1039/B719251G
您可能还喜欢
(5-氨基吡唑-3-基)乙酸(CAS号:174891-10-2)的物理化学性质是什么?
(5-氨基吡唑-3-基)乙酸是一种无色至白色固体,分子量为174.15 g/mol。它在水中具有较好的溶解性,在有机溶剂中的溶解度较低。该化合物具有较好的反应活...
3-氟-4,5-二氯苯胺(CAS号:35754-38-2)适用哪些法规指南?
3-氟-4,5-二氯苯胺受到多项法规指南的约束,包括但不限于GHS(全球化学品统一分类和标签制度)的危险分类标准、欧盟的REACH法规(注册、评估、授权和限制)...
什么是(R)-(+)-2,2',6,6'-四甲氧基-4,4'-联(二(3,5-二甲苯基基)膦基)-3,3'-二联吡啶(CAS号:442905-33-1)?
这是一种有机化合物,化学名为(R)-(+)-2,2',6,6'-四甲氧基-4,4'-联(二(3,5-二甲苯基基)膦基)-3,3'-二联吡啶,CAS号为44290...
1-氨基-2-氰基萘(CAS号:3100-67-2)应用于哪些行业?
1-氨基-2-氰基萘在医药、聚合物、传感器和半导体等行业中有应用。在医药领域,它可用作中间体合成某些药物。在聚合物行业,它可以用于制备具有特定性能的聚合物。此外...
如何处理含有1-溴-4-(异丙氧基甲基)苯(CAS号:98446-84-5)的废料?
处理含1-溴-4-(异丙氧基甲基)苯的废料时,首先应确保废液收集在防渗漏的容器中,避免泄露。然后,可以考虑采用化学降解法或物理吸附法进行处理。在特定条件下,可通...
6-Chloro-8-(trifluoromethyl)chroman-4-one(CAS号:1344889-75-3)的主要用途是什么?
6-氯-8-三氟甲基-2,3-二氢-4H-色喃-4-酮主要用于有机合成中的中间体,也可作为研究试剂使用。
7-乙氧基-2-萘酚(CAS号:57944-44-2)通常如何合成?
7-乙氧基-2-萘酚通常通过N-乙氧基化反应合成,首先将2-萘酚与乙醇钠在乙醇中反应生成7-乙氧基-2-萘酚钠盐,再通过酸化进一步得到7-乙氧基-2-萘酚。该合...
4-(1,1-二氧硫代吗啉)丁醇(CAS号:59801-41-1)适用哪些法规指南?
该化合物需遵循一系列的法规指南,包括但不限于GHS全球统一分类和标签制度,其分类可能包括易燃液体和可能危害水生环境。在欧洲,还需遵循REACH法规,确保物质和混...
4-甲氧基苄基叠氮甲酸酯(CAS号:25474-85-5)的物理化学性质是什么?
4-甲氧基苄基叠氮甲酸酯是一种无色液体,具有一定的挥发性。其分子量为198.16,熔点为-69°C,沸点为105°C。该化合物在水中溶解度较低,在有机溶剂如乙醇...
如何处理含有4-氯-2-氟嘧啶(CAS号:51422-00-5)的废料?
含有4-氯-2-氟嘧啶的废料应按照危险废物处理。首先,应收集并分类这些废料,避免与其他废物混合。然后,可以采用焚烧处理或者交由专业机构进行处置。在处理过程中,需...
来源期刊
Polymer Chemistry

Polymer Chemistry welcomes submissions in all areas of polymer science that have a strong focus on macromolecular chemistry. Manuscripts may cover a broad range of fields, yet no direct application focus is required.














![1-(1-Benzyl-1,2,3,6-tetrahydropyridin-4-yl)-1H-benzo[d]imidazol-2(3H)-one structure 1-(1-Benzyl-1,2,3,6-tetrahydropyridin-4-yl)-1H-benzo[d]imidazol-2(3H)-one structure](https://cnstatic.chemtradehub.com/structs/603/60373-71-9-7dfb.webp)