3D printable shape-customized hydrogel thermocells
作者:Lili Liu, Yiwen Bo, Ding Zhang, Jiaqi Guo, Wenqi Fan, Ruohan Niu, Xin Guo, Xiaotian Jiang, Rujun Ma · 发表于:National Science Review · 年份:2025 · DOI:10.1093/nsr/nwaf518 · 被引用次数:2 · 研究领域:Advanced Sensor and Energy Harvesting Materials、Advanced Thermoelectric Materials and Devices、Solar-Powered Water Purification Methods
ABSTRACT Hydrogel thermocells based on the thermogalvanic effect hold significant promise for energy harvesting and flexible electronics due to their excellent heat-to-electric conversion and stretchability. However, mismatched contact surfaces between bulk hydrogel thermocells and complex heat-source geometries often lead to poor heat utilization and reduced conversion efficiency. While 3D printing can create structures that match these complex interfaces, direct printing of hydrogel thermocells remains challenging due to issues such as water evaporation and the incompatibility of redox couples with photopolymer inks. To overcome these challenges, we combine 3D digital light processing with a thermoelectric (TE) solvent-exchange strategy, enabling the precise customization of stretchable hydrogel thermocells (DHFGs) that conform to specific heat-source geometries. Nonvolatile deep eutectic solvents in the photopolymer ink precursors form robust eutectogel networks through ultraviolet-initiated polymerization, ensuring high structural fidelity (down to 130 μm). The resulting 3D-printed thermocells exhibit excellent TE performance (3.5 mV K−1) and can be tailored to complex geometries. This conformal design extends the effective working ambient temperature range by 6.0 K and boosts output power to ∼350% of that of an unmatched DHFG. Additionally, the microstructured DHFG demonstrates superior pressure sensitivity (0.35 kPa−1) within a low-pressure range (<1.0 kPa), at ∼...