• The study introduces a high-performance cellulose hydrogel (HPCH) with a biomimetic layered porous structure inspired by human skin, combining a soft layer with large macropores and a hard layer with small micropores, enhancing both sensitivity and mechanical performance.
• The HPCH sensor demonstrates exceptional pressure sensitivity of 1622 kPa⁻¹, a wide detection range of up to 160 kPa, and excellent conductivity of 4.01 S m⁻¹, outperforming existing cellulose-based sensors.
• Ion immersion further optimizes the hydrogel's conductivity and dielectric properties, offering superior performance.
• The sensor's outstanding performance in health monitoring, industrial diagnostics, and pressure distribution detection positions it as a versatile, durable, and highly sensitive solution for various pressure-sensing applications.
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