Table 3 The calculated electrical conductivity per relaxation time, \(\sigma \)/\(\tau \) (1/\(\Omega \) m s) for Li\(_x\)Ti\(_{1-x}\)N and Li\(_x\)Ti\(_{1-x}\)C along with related chemical potential (eV) at room temperature (300 K).

From: Effect of alloying Li on lithium-ion batteries applicability of two-dimensional TiN and TiC as novel electrode materials: a first principle study

 

\(\sigma {/}\tau \) (1/\(\Omega \) m s)

Chemical potential (eV)

Li\(_{0.125}\)Ti\(_{0.875}\)N

\(7.62\times 10^{19}\)

\(-\) 0.33

Li\(_{0.25}\)Ti\(_{0.75}\)N

\(4.14 \times 10^{19}\)

\(-\) 4.19

Li\(_{0.3755}\)Ti\(_{0.625}\)N

\(3.58\times 10^{19}\)

\(-\) 3.02

Li\(_{0.5}\)Ti\(_{0.5}\)N

\(3.43\times 10^{19}\)

\(-\) 3.88

Li\(_{0.125}\)Ti\(_{0.875}\)C

\(7.37 \times 10^{19}\)

\(-\) 1.45

Li\(_{0.25}\)Ti\(_{0.75}\)C

\(9.8\times 10^{19}\)

\(-\) 2.19

Li\(_{0.375}\)Ti\(_{0.625}\)C

\(6.27\times 10^{19}\)

\(-\) 1.47

Li\(_{0.5}\)Ti\(_{0.5}\)C

\(6.5\times 10^{19}\)

\(-\) 4.31