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Martin Kunz

Researcher at Lawrence Berkeley National Laboratory

Publications -  54
Citations -  4273

Martin Kunz is an academic researcher from Lawrence Berkeley National Laboratory. The author has contributed to research in topics: Diffraction & Bulk modulus. The author has an hindex of 33, co-authored 54 publications receiving 3874 citations. Previous affiliations of Martin Kunz include McMaster University & École normale supérieure de Lyon.

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Out-of-Center Distortions around Octahedrally Coordinated d0 Transition Metals

TL;DR: In this article, the bond valence approach is used to model the characteristic out-of-center electronic distortions around d 0 transition metal cations in octahedral coordination, where certain bonds are weighted to take into account the intrinsic inequality of the bonds in such a distorted coordination.
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Effect of surface microstructure on electrochemical performance of garnet solid electrolytes.

TL;DR: This study presents the fabrication of LLZO heterostructured solid electrolytes, which allowed direct correlation of surface microstructure with the electrochemical characteristics of the interface, and low area specific resistances were achieved, removing a significant obstacle toward practical implementation ofSolid electrolytes in high energy density batteries.
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Thermoelastic properties and crystal structure of MgSiO3 perovskite at lower mantle pressure and temperature conditions

TL;DR: In this article, a new synchrotron X-ray diffraction study of MgSiO3 perovskite at high-pressure and high-temperature has been carried out in a laser-heated diamond-anvil cell to 94 GPa and temperatures above 2500 K.
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Extended mapping and exploration of the vanadium dioxide stress-temperature phase diagram.

TL;DR: This work shows that the actively tuning strain in micro/nanoscale electronic materials provides an effective route to investigate their fundamental properties beyond what can be accessed in their bulk counterpart.
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P-v-t equation of state of mgsio3 perovskite

TL;DR: In this paper, a pressure-volume-temperature data set has been obtained for MgSiO3 perovskite, using synchrotron X-ray diffraction with a laser-heated diamond-anvil cell.