首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Gold nanoparticles immobilized in hyperbranched polyethylenimine modified polyacrylonitrile fiber as highly efficient and recyclable heterogeneous catalysts for the reduction of 4-nitrophenol
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Gold nanoparticles immobilized in hyperbranched polyethylenimine modified polyacrylonitrile fiber as highly efficient and recyclable heterogeneous catalysts for the reduction of 4-nitrophenol

机译:固定在超支化聚乙烯亚胺改性的聚丙烯腈纤维中的金纳米颗粒,作为高效且可回收的多相催化剂,用于还原4-硝基苯酚

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摘要

Hyperbranched polyethylenimine (HPEI) modified polyacrylonitrile fiber (PANF) was prepared through a water mediated hydrolysis and amidation reaction in an autoclave. The grafting amount of HPEI onto PANF could be modulated conveniently by varying the preparation conditions, such as reaction temperature, reaction time and the feed ratio of HPEI to PANF. The Young's modulus of the PANF decreased with the grafting of HPEI, especially when more HPEIs were grafted. As for the PANF-g-HPEI with low HPEI content, the Young's moduli were similar before and after loading of AuNPs, whereas the loading of AuNPs obviously deteriorated the strength of the fibers with high HPEI content. From the nitrogen adsorption and desorption isotherms, it could be seen that PANF contained nanometer sized pores, and the grafting with HPEI did not affect the pore size, but did reduce the surface area. Moreover, the loading of AuNPs into PANF-g-HPEI also did not influence the pore size, but decreased the surface area. FTIR and XPS analyses demonstrated that the obtained PANF-g-HPEI not only contained a large amount of amino groups from the HPEI moiety, but also many carboxylate ions due to the hydrolysis of the cyano groups of PANF. XRD characterization proved that the inner crystal region of PANF was partially broken by the introduction of HPEI moieties. SEM showed that the PANFs swelled up after grafting with HPEI, and the increase of the grafting efficiency led to a larger average diameter of the fibers. When the grafting amount of HPEI onto PANF reached as high as 97%, the surface of the fibers was severely impaired. The obtained PANF-g-HPEIs could be successfully used as supporters and stabilizers in the preparation of small-sized AuNPs. TEM characterization showed that the mixing time of PANF-g-HPEIs with HAuCI4 aqueous solution affected the size and size distribution of the formed AuNPs, and the optimal mixing time was around 0.5 h. The average diameter of the obtained AuNPs was around 3.0 nm at a feed ratio of amino groups of PANF-g-HPEI to Au atoms ([N]: [Au]) of 200, independent of HPEI content of the PANF-g-HPEIs used. Reducing the [N]: [Au] feed ratio increased the average size of the obtained AuNPs. The AuNPs supported by PANF-g-HPEIs could be used as efficient catalysts for the heterogeneous catalytic reduction of 4-nitrophenol by NaBH4. The PANF-g-HPEI with lower HPEI content endowed the supported AuNPs with a slightly higher catalytic rate. These heterogeneous AuNP catalysts could be conveniently recovered and reused many times, especially the AuNPs supported by the PANF-g-HPEIs containing a low content of HPEI. The turnover number CTON) values of the AuNPs supported by PANF-g-HPEI_(0.31) and PANF-g-HPEI_(0.58) could reach more than 5 × 10~4, which is unprecedented in the catalytic reduction of 4-nitrophenol.
机译:通过高压釜中水介导的水解和酰胺化反应,制备了超支化聚乙烯亚胺(HPEI)改性聚丙烯腈纤维(PANF)。通过改变反应温度,反应时间和HPEI与PANF的进料比等制备条件,可以方便地调节HPEI在PANF上的接枝量。随着HPEI的接枝,PANF的杨氏模量下降,特别是当接枝更多的HPEI时。对于低HPEI含量的PANF-g-HPEI,AuNPs加载前后的杨氏模量相似,而AuNPs的加载明显降低了HPEI含量高的纤维的强度。从氮的吸附和解吸等温线可以看出,PANF包含纳米级的孔,并且用HPEI接枝不影响孔的大小,但确实减少了表面积。而且,AuNPs装入PANF-g-HPEI中也不会影响孔径,但会减小表面积。 FTIR和XPS分析表明,所获得的PANF-g-HPEI不仅包含来自HPEI部分的大量氨基,而且由于PANF的氰基的水解而含有许多羧酸根离子。 XRD表征证明,通过引入HPEI部分可以部分破坏PANF的内部晶体区域。扫描电镜显示,用HPEI接枝后,PANFs膨胀,接枝效率的提高导致纤维的平均直径增大。当HPEI在PANF上的接枝量高达97%时,纤维表面严重受损。所得的PANF-g-HPEIs可以成功地用作制备小型AuNPs的载体和稳定剂。 TEM表征表明,PANF-g-HPEIs与HAuCl4水溶液的混合时间影响所形成的AuNPs的尺寸和大小分布,最佳混合时间约为0.5 h。与PANF-g-HPEIs的HPEI含量无关,在PANF-g-HPEI的氨基与Au原子的进料比([N]:[Au])为200时,所获得的AuNP的平均直径约为3.0 nm。用过的。降低[N]:[Au]的进料比增加了所获得的AuNP的平均尺寸。由PANF-g-HPEIs所支持的AuNPs可以用作有效的催化剂,用于NaBH4的多相催化还原4-硝基苯酚。具有较低HPEI含量的PANF-g-HPEI使负载的AuNP具有更高的催化速率。这些多相AuNP催化剂可以方便地回收和重复使用多次,特别是由HPEI含量低的PANF-g-HPEIs支撑的AuNPs。 PANF-g-HPEI_(0.31)和PANF-g-HPEI_(0.58)支持的AuNPs的周转数CTON)值可达到5×10〜4以上,这在4-硝基苯酚的催化还原中是空前的。

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