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首页> 外文期刊>Polymers for advanced technologies >Synthesis of poly(ether ketone amide)s containing 4‐aryl‐2,6‐ diphenylpyridine moieties by a heterogeneous palladium‐catalyzed polycondensation of aromatic diiodides, aromatic diamines, and carbon monoxide
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Synthesis of poly(ether ketone amide)s containing 4‐aryl‐2,6‐ diphenylpyridine moieties by a heterogeneous palladium‐catalyzed polycondensation of aromatic diiodides, aromatic diamines, and carbon monoxide

机译:含有4-芳基-2,6-二苯基吡啶部分的聚(醚酮酰胺)S的合成通过芳族二碘化物,芳族二胺和一氧化碳的异质钯催化的缩聚

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> New aromatic poly(ether ketone amide)s containing 4‐aryl‐2,6‐diphenylpyridine units were prepared by the heterogeneous palladium‐catalyzed carbonylative polymerization of aromatic diiodides with ether ketone units, aromatic diamines bearing pyridine groups, and carbon monoxide. Polymerizations were performed in N,N ‐dimethyl‐ acetamide (DMAc) at 120°C in the presence of a magnetic nanoparticles‐supported bidentate phosphine palladium complex [Fe 3 O 4 @SiO 2 ‐2P‐PdCl 2 ] as catalyst with 1,8‐diazabicycle[5,4,0]‐7‐undecene (DBU) as base and generated poly(ether ketone amide)s with inherent viscosities up to 0.79?dL/g. All the polymers were soluble in many organic solvents. These polymers showed glass transition temperatures between 219°C and 257°C and 10% weight loss temperatures ranging from 467°C to 508°C in nitrogen. These polyamides could be cast into transparent, flexible, and strong films from DMAc solution with tensile strengths of 86.4 to 113.7?MPa, tensile moduli of 2.34 to 3.19?GPa, and elongations at break of 5.2% to 6.9%. These polymers also exhibited good optical transparency with an ultraviolet‐visible absorption cut‐off wavelength in the 371 to 384‐nm range. Importantly, the new heterogeneous palladium catalyst can easily be recovered from the reaction mixture by simply applying an external magnet and recycled at least 8 times without significant loss of activity. Our catalytic system not only avoids the use of an excess of PPh 3 and prevents the formation of palladium black, but also solves the basic problems of palladium catalyst recovery and reuse.
机译: > 通过用乙醚酮单位,含有吡啶基团的芳族二碘化物的芳族脱碘化物的非均相钯催化羰基化聚合制备含有4-芳基-2,6-二苯基吡啶单元的新芳族聚(醚酮酰胺)S。进行聚合 n,n - 在120℃下在磁性纳米颗粒的双齿磷钯复合物[Fe 3 O. 4 @sio. 2 -2p-pdcl. 2 [5,4,0] -7-8-85℃(DBU)作为碱的催化剂作为碱并产生聚(醚酮酰胺),其固有粘度高达0.79〜DL / g。所有聚合物均可溶于许多有机溶剂。这些聚合物在219℃和257℃和10%重量损失温度范围为467℃至508℃的玻璃化转变温度。这些聚酰胺可以浇铸至从DMAC溶液的透明,柔性和强薄膜,其拉伸强度为86.4至113.7〜113.7μm≤2.34至3.19〜3.19〜3.19℃的拉伸模量,突破的伸长率为5.2%至6.9%。这些聚合物还表现出良好的光学透明度,在371至384-nm范围内具有紫外线可见吸收切断波长。重要的是,通过简单地施加外部磁铁并再循环至少8倍,可以容易地从反应混合物中回收新的异质钯催化剂,而不会显着丧失活性。我们的催化系统不仅避免使用过量的PPH 3 并防止钯黑形成,但也解决了钯催化剂回收和再利用的基本问题。

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