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Experimental evidence for the coupling of Li-motion and structural distortions in LiMnPO₄

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arxiv 1304.5116 v1 pith:4T5MXIPB submitted 2013-04-18 cond-mat.mtrl-sci

Experimental evidence for the coupling of Li-motion and structural distortions in LiMnPO$_4$

classification cond-mat.mtrl-sci
keywords couplingexperimentaldatadisorderdistortionsevidencelimnpophase
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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abstract

We present a detailed $^7$Li- and $^{31}$P-NMR study on single crystalline LiMnPO$_4$ in the paramagnetic and antiferromagnetic phase (AFM, $T_N \sim$ 34 K). This allows us to determine the spin directions in the field-induced spin-flop phase. In addition, the anisotropic dipolar hyperfine coupling tensor of the $^7$Li- and $^{31}$P-nuclei is also fully determined by orientation and temperature dependent NMR experiments and compared to the calculated values from crystal structure data. Deviations of the experimental values from the theoretical ones are discussed in terms of Mn disorder which is induced by Li-disorder. In fact, the disorder in the Mn-sublattice is directly revealed by our diffuse x-ray scattering data. The present results provide experimental evidence for the Li-diffusion strongly coupling to structural distortions within the MnPO$_4$ host, which is expected to significantly affect the Li-mobility as well as the performance of batteries based on this material.

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