Yan Siqi, Li Yue, Li Peili, Jia Ting, Wang Shengtian, Wang Xiaohong
Key Lab of Polyoxometalate Science of Ministry of Education, Faculty of Chemistry, Northeast Normal University Changchun 130024 P. R. China
RSC Adv. 2018 Jan 17;8(7):3499-3511. doi: 10.1039/c7ra12842h. eCollection 2018 Jan 16.
Polyoxometalate HPMoVO/SiO (HPMoV/SiO) nanofibers with a mesoporous structure were fabricated through combined electrospinning and surfactant-directing pore formation technique. These heterogeneous nanofibers were characterized by a wide variety of techniques to show mesoporous structure, high surface area, excellent stability, nanofiber morphology, highly efficient activity and selectivity towards the oxidation of starch and 5-hydroxymethylfurfural (5-HMF) either by HO or by oxygen. POM/SiO nanofibers were suitable for oxidation of starch by HO and oxidation of 5-HMF by O with high efficiency of 0.58 mol per 100 g carboxyl content and 89.2% yield of DFF; these results are comparable with those obtained using homogeneous HPMoVO and HPMoV/SiO without nanofiber morphology. Furthermore, HPMoV/SiO nanofibers could be easily recycled and reused at least ten times with no significant loss of catalytic activity due to their nanofiber morphology.
通过静电纺丝和表面活性剂导向造孔技术相结合制备了具有介孔结构的多金属氧酸盐HPMoVO/SiO(HPMoV/SiO)纳米纤维。通过多种技术对这些非均相纳米纤维进行了表征,结果表明其具有介孔结构、高比表面积、优异的稳定性、纳米纤维形态、对淀粉和5-羟甲基糠醛(5-HMF)的氧化具有高效活性和选择性,无论是通过HO还是氧气进行氧化。POM/SiO纳米纤维适用于通过HO氧化淀粉和通过O氧化5-HMF,羧基含量每100 g可达0.58 mol,二氟甲氧基糠醛(DFF)产率达89.2%;这些结果与使用无纳米纤维形态的均相HPMoVO和HPMoV/SiO所获得的结果相当。此外,由于其纳米纤维形态,HPMoV/SiO纳米纤维可以很容易地回收再利用至少十次,且催化活性没有明显损失。