Understanding Complex Synthesis-Structure-Property Relationships in the Frustrated S = 1 Spinel Antiferromagnet, ZnV2O4
Quantum magnets with frustrated magnetic interactions are predicted to give rise to a rich variety of exotic quantum materials properties. However, the complexity of such quantum materials often makes characterising the exact nature of their exotic properties extremely challenging. For instance, in frustrated quantum magnets, the degeneracy of possible magnetic ground states---that stems from the competition of magnetic interactions---means that the experimentally observed properties are extremely sensitive to any defects or disorder in the underlying materials structure, which can vary from sample to sample depending on the synthesis method used. This poses challenges for the development and application of condensed matter theory to understand the behaviour of real quantum materials, and ultimately limits our current ability to design and synthesise new quantum materials with properties tailored towards specific applications. Here, we aim to explore the complex synthesis-structure-property relationships in the frustrated S = 1 spinel antiferromagnet, ZnV2O4.
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The recommended format for citing this dataset in a research publication is in the following format:
L. Clark; GRAHAM Jennifer; RITTER Clemens; STEWART John Ross and WILDES Andrew. (2023). Understanding Complex Synthesis-Structure-Property Relationships in the Frustrated S = 1 Spinel Antiferromagnet, ZnV2O4. Institut Laue-Langevin (ILL) doi:10.5291/ILL-DATA.5-31-2929
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This data is not yet public