Spin dynamics of hydrothermally synthesized δ-MnO nanowhiskers

We have reported novel 2D monoclinic, P 6 3 / mnm , δ-MnO 2 nanowhiskers synthesized through a simple and facile hydrothermal route under optimized conditions without using any template. The X-ray diffraction pattern shows the formation of the δ phase of MnO 2 , which is further confirmed by Fourier...

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Veröffentlicht in:Physical chemistry chemical physics : PCCP 2020-07, Vol.22 (25), p.14236-14245
Hauptverfasser: Gangwar, Deepti, Rath, Chandana
Format: Artikel
Sprache:eng
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Zusammenfassung:We have reported novel 2D monoclinic, P 6 3 / mnm , δ-MnO 2 nanowhiskers synthesized through a simple and facile hydrothermal route under optimized conditions without using any template. The X-ray diffraction pattern shows the formation of the δ phase of MnO 2 , which is further confirmed by Fourier transform infrared (FT-IR) spectroscopy and Raman spectroscopy. The transmission electron micrograph revealed nanowhiskers having a diameter of ∼7 nm and the high-resolution TEM and SAED patterns demonstrated the interplanar spacing and distinguished diffraction rings corresponding to the monoclinic phase of δ-MnO 2 . Fitting the temperature-dependent susceptibility with the Curie-Weiss law confirms the strong antiferromagnetic ordering and high effective magnetic moment of Mn 4+ present in δ-MnO 2 . The large effective magnetic moment is attributed to the presence of both Mn 3+ and Mn 4+ , as confirmed by XPS. The reduced valency of Mn from 4 to 3 is accompanied with oxygen vacancies, affording the exact composition of MnO 1.58 . The dynamic magnetic properties of the δ-MnO 2 nanowhiskers were investigated using the frequency-dependent AC susceptibility fitted with various phenomenological models like the Vogel-Fulcher law and power law, indicating the existence of interacting spin clusters, which could freeze at ∼11.2 K. The time dependence of thermoremanent magnetization fitted well with a stretched exponential function, supporting the existence of relaxing spin clusters. Thus, the spin glass relaxation in the δ-MnO 2 nanowhiskers is attributed to the interaction between Mn 4+ and Mn 3+ , which results in intrinsic magnetic frustration and weak ferromagnetism with finite coercivity below T f . We have reported novel 2D monoclinic, P 6 3 / mnm , δ-MnO 2 nanowhiskers synthesized through a simple and facile hydrothermal route under optimized conditions without using any template.
ISSN:1463-9076
1463-9084
DOI:10.1039/d0cp02245d