Ab initio analysis of Li-B-C structure stability
ORAL
Abstract
Prediction of high-Tc superconductivity in hole-doped LixBC two decades ago has brought about an extensive effort to synthesize new materials with honeycomb B-C layers but the thermodynamic stability of Li-B-C compounds remains largely unexplored. In this study, we use density functional theory to characterize well-established and recently reported Li-B-C phases. Our calculation of the Li chemical potential in LixBC helps estimate the (T,P) conditions required for delithiation of the LiBC parent material, while examination of B-C phases helps rationalize the observation of metastable BC3 polymorphs. At the same time, some of the previously reported crystal structure phases appear to be thermodynamically and kinetically inaccessible.
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Presenters
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Saba Kharabadze
SUNY Binghamton University, Binghamton University
Authors
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Saba Kharabadze
SUNY Binghamton University, Binghamton University
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Maxwell Meyers
Binghamton University
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Charlsey Tomassetti
Binghamton University
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Elena R Margine
Binghamton University
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Igor I Mazin
George Mason University, Department of Physics and Astronomy, George Mason University; Quantum Science and Engineering Center, George Mason University
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Aleksey Kolmogorov
Binghamton University