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Soft, Wet‐Chemical Synthesis of Metastable Superparamagnetic Hexagonal Close‐Packed Nickel Nanoparticles in Different Ionic Liquids

32

Citations

113

References

2017

Year

Abstract

The microwave-induced decomposition of bis{N,N'-diisopropylacetamidinate}nickel(II) [Ni{MeC(NiPr)<sub>2</sub> }<sub>2</sub> ] or bis(1,5-cyclooctadiene)nickel(0) [Ni(COD)<sub>2</sub> ] in imidazolium-, pyridinium-, or thiophenium-based ionic liquids (ILs) with different anions (tetrafluoroborate, [BF<sub>4</sub> ]<sup>-</sup> , hexafluorophosphate, [PF<sub>6</sub> ]<sup>-</sup> , and bis(trifluoromethylsulfonyl)imide, [NTf<sub>2</sub> ]<sup>-</sup> ) yields small, uniform nickel nanoparticles (Ni NPs), which are stable in the absence of capping ligands (surfactants) for more than eight weeks. The soft, wet-chemical synthesis yields the metastable Ni hexagonal close-packed (hcp) and not the stable Ni face-centered cubic (fcc) phase. The size of the nickel nanoparticles increases with the molecular volume of the used anions from about 5 nm for [BF<sub>4</sub> ]<sup>-</sup> to ≈10 nm for [NTf<sub>2</sub> ]<sup>-</sup> (with 1-alkyl-3-methyl-imidazolium cations). The n-butyl-pyridinium, [BPy]<sup>+</sup> , cation ILs reproducibly yield very small nickel nanoparticles of 2(±1) nm average diameter. The Ni NPs were characterized by high-resolution transmission electron microscopy (HR-TEM) and powder X-ray diffraction. An X-ray photoelectron spectroscopic (XPS) analysis shows an increase of the binding energy (E<sub>B</sub> ) of the electron from the Ni 2p<sub>3/2</sub> orbital of the very small 2(±1) nm diameter Ni particles by about 0.3 eV to E<sub>B</sub> =853.2 eV compared with bulk Ni<sup>0</sup> , which is traced to the small cluster size. The Ni nanoparticles show superparamagnetic behavior from 150 K up to room temperature. The saturation magnetization of a Ni (2±1 nm) sample from [BPy][NTf<sub>2</sub> ] is 2.08 A m<sup>2</sup> kg<sup>-1</sup> and of a Ni (10±4 nm) sample from [LMIm][NTf<sub>2</sub> ] it is 0.99 A m<sup>2</sup> kg<sup>-1</sup> , ([LMIm]=1-lauryl-3-methyl- imidazolium). The Ni NPs were active catalysts in IL dispersions for 1-hexene or benzene hydrogenation. Over 90 % conversion was reached under 5 bar H<sub>2</sub> in 1 h at 100 °C for 1-hexene and a turnover frequency (TOF) up to 1330 mol<sub>hexane</sub> (mol<sub>Ni</sub> )<sup>-1</sup> h<sup>-1</sup> or in 60 h at 100 °C for benzene hydrogenation and TOF=23 mol<sub>cyclohexane</sub> (mol<sub>Ni</sub> )<sup>-1</sup> h<sup>-1</sup> .

References

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