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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Modification of rGO by B(C6F5)(3) to generated single-site Lewis Acid rGO-O-B(C6F5)(2) as co activator of nickel complex, to produce highly disperse rGO-PE nanocomposite
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Modification of rGO by B(C6F5)(3) to generated single-site Lewis Acid rGO-O-B(C6F5)(2) as co activator of nickel complex, to produce highly disperse rGO-PE nanocomposite

机译:通过B(C6F5)(3)改性RGO(C6F5)(3)作为镍复合物的CO活化剂生成单点路易斯酸RGO-o-B(C6F5)(2),以产生高度分散的RGO-PE纳米复合材料

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摘要

We investigated the incorporation of reduced graphene oxide (rGO) into branched polyethylene, achieving nanocomposites with different rGO contents. The strategy included the direct reaction between B(C6F5)(3) (BCF) with rGO (reduced graphene oxide) and demonstrated by XPS, B-11, F-1(9) -MAS NMR, FT-IR the efficient modification of the rGO. The resulting solid contains sites -O-B(C6F5)(2 )capable of acting as co-catalysts in the activation of an (alpha-iminocarboxamidate)nickel (II) complex. The results show the efficient activation of this nickel catalyst through an exocyclic Lewis acid-base interaction and the subsequent ethylene polymerization. We achieved with this heterogeneous catalytic system activity greater than those previously reported for the BCF-Ni, homogenous system, while the characterization of the black colored polymer generated in situ, showed a complete delamination of the rGO. It became the first rGO-B(C6F5)(2) -Ni system fully characterized and capable of delaminate the rGO support by producing a nanocomposite rGO-LLDPE without loss of activity, compared to the homogeneous system. In addition, the polymer contains about 70% of methyl branches and a melting point higher than 125 degrees C.
机译:我们研究了将氧化石墨烯(RGO)的掺入分支化聚乙烯,以不同的rgo含量达到纳米复合材料。该策略包括B(C6F5)(3)(3)(BCF)与RGO(氧化石墨烯)之间的直接反应,并通过XPS,B-11,F-1(9)-MAS NMR,FT-IR的有效修改rgo。所得固体含有能够作为(α-酰亚胺酰胺)镍(II)复合物的激活中作为助催化剂作为助催化剂的位点-O-B(C6F5)(2)。结果表明,通过官方路易斯酸碱相互作用和随后的乙烯聚合,有效地活化该镍催化剂。我们通过该异质催化系统的活性实现,该活性大于先前报道的BCF-Ni,均质系统,而原位产生的黑色聚合物的表征,表现出RGO的完全分层。它成为第一个RGO-B(C6F5)(2)-NI系统,其完全表征并能够通过在均质系统上产生纳米复合材料RGO-LLDPE而不损失活性来分解RGO支持。此外,聚合物含有约70%的甲基分支,熔点高于125℃。

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