<p>We reported for the first time the establishment of a simple, room-temperature synthesis protocol for the new organic-inorganic hybrid salt of cyclohexylammonium hexaisothiocyanatoferrate(III) 2.5H<sub>2</sub>O, which was found a convenient single-source precursor for the synthesis of nanocrystalline iron oxide or sulfide. The formation of this salt was spectrophotometrically confirmed by FT-IR and UV-Vis. In addition, SCXRD revealed that this salt had the trigonal space group <i>R-3</i> with disorder of some isothiocyanate sulfur atoms. The thermal stability and the thermal decomposition products of this salt were atmosphere-dependent (air: 169&#xa0;°C; α-Fe<sub>2</sub>O<sub>3</sub> at 550&#xa0;°C; helium: 154&#xa0;°C; FeS at 800&#xa0;°C). The thermal decomposition impacted the textural properties of α-Fe<sub>2</sub>O<sub>3</sub> (an average crystallite size of ~ 41&#xa0;nm and S<sub>BET</sub> = ~ 4.0 m<sup>2</sup>/g) and FeS (~ 14&#xa0;nm and ~ 80 m<sup>2</sup>/g, respectively). The nanoparticulate nature affected the magnetic behavior of α-Fe<sub>2</sub>O<sub>3</sub> and FeS, as revealed by ac-susceptibility. They showed widen maximum at ~ 55&#xa0;K due to increasing disorder effect by particle sizes. However, below 40&#xa0;K, the susceptibility increased sharply, indicating a ferromagnetic ordering. In comparison, the ac-susceptibility of the salt exhibited a broad maximum at ~ 130&#xa0;K with an inflection point at ~ 180&#xa0;K. No transition to spin-flip was detected for all three materials.</p>

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Nanocrystalline iron oxide and sulfide by the thermal decomposition of cyclohexylammonium hexaisothiocyanatoferrate(III) 2.5H2O

  • Fahad S. Alqahtani,
  • Fahad M. Albaqi,
  • Raghad M. Almalahi,
  • Khalid I. Anojaidi,
  • Rasheed H. Arasheed,
  • Mohammed S. Alsurayhi,
  • Bandar S. Alhedaib,
  • Ibrahim A. Albinali,
  • Abdulmajeed M. Alkhalifa,
  • Eyad A. Alghilan,
  • Abdulaziz I. Alromaeh,
  • Monther A. Khanfar,
  • Murad A. AlDamen,
  • Fares Obad,
  • Khalil A. Ziq,
  • Kamal K. Taha,
  • Abdulaziz A. Bagabas

摘要

We reported for the first time the establishment of a simple, room-temperature synthesis protocol for the new organic-inorganic hybrid salt of cyclohexylammonium hexaisothiocyanatoferrate(III) 2.5H2O, which was found a convenient single-source precursor for the synthesis of nanocrystalline iron oxide or sulfide. The formation of this salt was spectrophotometrically confirmed by FT-IR and UV-Vis. In addition, SCXRD revealed that this salt had the trigonal space group R-3 with disorder of some isothiocyanate sulfur atoms. The thermal stability and the thermal decomposition products of this salt were atmosphere-dependent (air: 169 °C; α-Fe2O3 at 550 °C; helium: 154 °C; FeS at 800 °C). The thermal decomposition impacted the textural properties of α-Fe2O3 (an average crystallite size of ~ 41 nm and SBET = ~ 4.0 m2/g) and FeS (~ 14 nm and ~ 80 m2/g, respectively). The nanoparticulate nature affected the magnetic behavior of α-Fe2O3 and FeS, as revealed by ac-susceptibility. They showed widen maximum at ~ 55 K due to increasing disorder effect by particle sizes. However, below 40 K, the susceptibility increased sharply, indicating a ferromagnetic ordering. In comparison, the ac-susceptibility of the salt exhibited a broad maximum at ~ 130 K with an inflection point at ~ 180 K. No transition to spin-flip was detected for all three materials.