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Wayne State University

Synthesis And Characterization Of Transition Metal Arsenide Nanocrystals And The Metastability And Magneto-Structural Phase Transition Behavior Of Mnas Nanocrystals

Abstract

dc:description.abstract

<p>This dissertation study focuses on (1) probing the magneto-structural phase transformation in nanoscale MnAs; (2) evaluation of the size-dependent phase stability of type-B MnAs (prepared by rapid injection); and (3) developing a general synthetic method for transition metal arsenide nanoparticles.</p> <p>Discrete MnAs nanoparticles that adopt different structures at room temperature (type-A, α-structure and type-B, β-structure) have been prepared by the solution-phase arrested precipitation method. Atomic pair distribution and Rietveld refinement were employed on synchrotron data to explore the structural transitions of the bulk and nanoparticle samples, and these results were compared to AC magnetic susceptibility measurements of the samples. The results confirm that the structural transition and the magnetic transition are highly correlated in bulk MnAs and suggest that for type-A MnAs nanoparticles, there is a similar magneto-structural phase transition occurring in the same temperature region as that for bulk MnAs. However, for type-B MnAs nanoparticles, there is no magneto-structural phase transition, consistent with that type-B MnAs nanoparticles being kinetically trapped in the β-structure.</p> <p>Type-B MnAs nanoparticles adopting the β-strucuture undergo a transformation from β to α upon cooling. Temperature dependent XRD studies and magnetic measurements suggest that the TP for α → β conversion is suppressed to lower temperatures relative to bulk and type-A MnAs nanoparticles and that the transformation is reversible but has an enhanced hysteresis, which results in a large coexistence temperature range for the α and β structure. The transformation temperature correlated with the compression of the lattice parameters of the type-B MnAs nanoparticles due to the decrease in the particle size or the presence of chemical doping, or both. </p> <p>A new general synthetic method for transition metal arsenide (Ni11As8, FeAs and CoAs) nanocrystals synthesis was developed by directly injecting the metal precursor into pre-reacted arsenic precursors. This method enables more control of the nanoparticle growth and monodispersity than is achieved by the direct conversion of metal nanoparticles.</p>

Degree

thesis:*
Name thesis:degree_name
Ph.D.
Level thesis:degree_level
Open Access Dissertation
Discipline thesis:degree_discipline
Chemistry
Year dc:date.available
2013

Author and committee

dc:creator, dc:contributor.*
Author dc:creator
  • Zhang, Yanhua
Contributors dc:contributor
  • Stephanie L. Brock

Subjects

dc:subject × 7

Identifiers

dc:identifier.*
OAI identifier oai:identifier
oai:digitalcommons.wayne.edu:oa_dissertations-1720

Chain of custody

source
Harvested from
Wayne State University
Base URL
digitalcommons.wayne.edu/do/oai/
Last updated
2026-07-24
Source record
OAI-PMH GetRecord
citation

Zhang, Yanhua. Synthesis And Characterization Of Transition Metal Arsenide Nanocrystals And The Metastability And Magneto-Structural Phase Transition Behavior Of Mnas Nanocrystals. Open Access Dissertation thesis, 2013. https://digitalcommons.wayne.edu/oa_dissertations/721