Department of Materials Science, Indian Association for the Cultivation of Science, Jadavpur, Kolkata, 700 032, India.
Chemistry. 2013 Jun 24;19(26):8507-14. doi: 10.1002/chem.201300128. Epub 2013 May 6.
Here we report a novel family of crystalline, supermicroporous iron(III) phosphonate nanomaterials (HFeP-1-3, HFeP-1-2, and HFeP-1-4) with different Fe(III)-to-organophosphonate ligand mole ratios. The materials were synthesized by using a hydrothermal reaction between benzene-1,3,5-triphosphonic acid and iron(III) chloride under acidic conditions (pH ≈ 4.0). Powder X-ray diffraction, N2 sorption, transmission and scanning electron microscopy (TEM and SEM) image analysis, thermogravimetric and differential thermal analysis (TGA-DTA), and FTIR spectroscopic tools were used to characterize the materials. The triclinic crystal phase [P1(2) space group] of the hybrid iron phosphonate was established by a Rietveld refinement of the PXRD analysis of HFeP-1-3 by using the MAUD program. The unit cell parameters are a = 8.749(1), b = 8.578(1), c = 17.725(3) Å; α = 104.47(3), β = 97.64(1), γ = 113.56(3)°; and V = 1013.41 Å(3). With these crystal parameters, we proposed an 24-membered-ring open framework structure for HFeP-1. Compound HFeP-1-3, with an starting Fe/ligand molar ratio of 3.0, shows the highest Brunauer-Emmett-Telller (BET) surface area of 556 m(2) g(-1) and uniform supermicropores of approximately 1.1 nm. The acidic surface of the porous iron(III) phosphonate nanoparticles was used in a highly efficient and recyclable catalytic transesterification reaction for the synthesis of biofuels under mild reaction conditions.
在这里,我们报道了一类新型的结晶、超微孔铁(III)膦酸盐纳米材料(HFeP-1-3、HFeP-1-2 和 HFeP-1-4),它们具有不同的 Fe(III)-有机膦酸盐配体摩尔比。这些材料是通过在酸性条件下(pH ≈ 4.0),用苯-1,3,5-三膦酸和三氯化铁之间的水热反应合成的。采用粉末 X 射线衍射、N2 吸附、透射和扫描电子显微镜(TEM 和 SEM)图像分析、热重和差热分析(TGA-DTA)以及傅里叶变换红外光谱工具对材料进行了表征。通过使用 MAUD 程序对 HFeP-1-3 的 PXRD 分析进行 Rietveld 精修,确定了混合铁膦酸盐的三斜晶相[P1(2)空间群]。晶胞参数为 a = 8.749(1),b = 8.578(1),c = 17.725(3) Å;α = 104.47(3),β = 97.64(1),γ = 113.56(3)°;V = 1013.41 Å(3)。根据这些晶体参数,我们提出了 HFeP-1 的一个 24 元环开放骨架结构。具有起始 Fe/配体摩尔比为 3.0 的化合物 HFeP-1-3 表现出最高的 Brunauer-Emmett-Teller(BET)比表面积 556 m(2) g(-1)和均匀的超微孔约 1.1 nm。多孔铁(III)膦酸盐纳米粒子的酸性表面在温和的反应条件下,用于高效和可回收的生物燃料合成的酯交换反应中。