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A Definition of the Magnetic Transition Temperature Using Valence Bond Theory. | LitMetric

A Definition of the Magnetic Transition Temperature Using Valence Bond Theory.

J Phys Chem A

Department of Chemistry, Imperial College London, South Kensington Campus, SW7 2AZ London, United Kingdom.

Published: March 2018

Macroscopic magnetic properties are analyzed using Valence Bond theory. Commonly the critical temperature T for magnetic systems is associated with a maximum in the energy-based heat capacity C(T). Here a more broadly applicable definition of the magnetic transition temperature T is described using the spin moment expectation value (i.e., applying the spin exchange density operator) instead of energy. Namely, the magnetic capacity C(T) reflects variation in the spin multiplicity as a function of temperature, which is shown to be related to ∂[χT(T)]/∂T. Magnetic capacity C(T) depends on long-range spin interactions that are not relevant in the energy-based heat capacity C(T). Differences between C(T) and C(T) are shown to be due to spin order/disorder within the crystal that can be monitored via a Valence Bond analysis of the corresponding magnetic wave function. Indeed the concept of the Boltzmann spin-alignment order is used to provide information about the spin correlation between magnetic units. As a final illustration, the critical temperature is derived from the magnetic capacity for several molecular magnets presenting different magnetic topologies that have been experimentally studied. A systematic shift between the transition temperatures associated with C(T) and C(T) is observed. It is demonstrated that this shift can be attributed to the loss of long-range spin correlation. This suggests that the magnetic capacity C(T) can be used as a predictive tool for the magnetic topology and thus for the synthetic chemists.

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Source
http://dx.doi.org/10.1021/acs.jpca.7b10657DOI Listing

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