Layered-oxide cathodes (LiNixMnyCozO2, "NMC") change unit-cell shape as lithium leaves and returns. The c-axis expands through most of charge but contracts sharply above ~80% state of charge (the H2→H3 phase transition), while the in-plane a-axis contracts monotonically:
ε_c(SOC) = ε_c,max · SOC/0.8 SOC ≤ 0.8
ε_c(SOC) = ε_c,max · (1 − 3.5·(SOC−0.8)) SOC > 0.8
ε_a(SOC) = −ε_a,max · SOC
This 2D cross-section renders a polycrystalline secondary particle as a mosaic of grains packed inside a circular boundary, each with its own random crystallographic axis angle. Because every grain expands/contracts along a different in-plane direction, neighboring grains pull against each other at their shared boundary — a mismatch stress that grows with the misorientation angle θ between their axes:
σ_boundary ≈ E · |ε_c − ε_a| · sin(θ)
dD = k · σ_boundary² · |ΔSOC| · (0.5 + 0.5·C-rate)
grain cracks once accumulated damage D ≥ 1
A single-crystal particle has no internal grain boundaries, so this intergranular mismatch mechanism cannot act on it — the same lattice strain still happens, but there is nothing for it to crack against. This is the real reason single-crystal NMC cathodes are being pursued industrially: they resist the microcracking that lets electrolyte infiltrate a particle's interior, oxidize fresh surface, and cause the capacity fade seen in polycrystalline cells cycled to deep discharge.
- Depth of discharge — wider swings mean a larger anisotropic strain excursion every cycle, so damage accumulates faster.
- C-rate — faster cycling increases diffusion-limited concentration gradients inside each grain, amplifying the effective boundary stress.
- Grain count — more, smaller grains means more boundaries and a finer mosaic; the underlying per-boundary fatigue model is unchanged.
- Capacity retention here is illustrative: it falls with the fraction of grains that have cracked, standing in for the isolated active material and parasitic electrolyte reactions a real cracked particle suffers.
- Drag inside the grain map to pan, scroll/pinch to zoom.