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Synthesis of the Elusive S = 1/2 Star Structure: A Possible Quantum Spin Liquid Candidate.

Maurice SorollaXiqu WangHyun-Joo KooMyung-Hwan WhangboAllan J Jacobson
Published in: Journal of the American Chemical Society (2020)
Materials with two-dimensional, geometrically frustrated, spin-1/2 lattices provide a fertile playground for the study of intriguing magnetic phenomena such as quantum spin liquid (QSL) behavior, but their preparation has been a challenge. In particular, the long-sought, exotic spin-1/2 star structure has not been experimentally realized to date. Here we report the synthesis of [(CH3)2(NH2)]3[CuII3(μ3-OH)(μ3-SO4)(μ3-SO4)3]·0.24H2O with an S = 1/2 star lattice. On the basis of the magnetic susceptibility and heat capacity measurements, the layered Cu-based compound exhibits antiferromagnetic interactions but no magnetic ordering or spin freezing down to 2 K. The spin-frustrated material appears to be a promising QSL candidate.
Keyphrases
  • room temperature
  • density functional theory
  • ionic liquid
  • single molecule
  • transition metal
  • molecularly imprinted
  • molecular dynamics
  • mass spectrometry
  • high resolution
  • simultaneous determination