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Updated: Jun 18, 2026

Preparation of Biopolymer Aerogels Using Green Solvents
Published on: July 4, 2016
High-Performance Aerogel-Based Moisture-Enabled Electricity Generators with Long Working Life for Hydroenergy
Lu Li1, Ming Xia1, Jinming Du1
1Key Laboratory of Textile Fiber and Products, Ministry of Education, Wuhan Textile University, Wuhan 430200, China.
Abstract:
To address the key challenges of low output, short duration, and difficult integration in moisture-enabled electricity generators (MEGs), we design a bilayer-structured aerogel-based moisture-enabled electricity generator (AMEG). By synergistically integrating a highly porous aerogel evaporation layer, a hygroscopic neutral salt (LiCl) combined with a hydrogel absorption layer, and an asymmetric active metal electrode, the proposed AMEG achieves a maximum open-circuit voltage (Voc) of 1.15 V, a short-circuit current (Isc) of 637.56 μA, and a power density (Pmax) of 24.36 μW/cm2. Notably, the AMEG maintains a stable Isc of 95.84 μA at -15 °C, demonstrating reliable operation under subzero conditions. Furthermore, the output voltage exhibits only minor variations across a bending angle ranging from 0° to 180°, showing excellent flexibility that facilitates large-scale integration. By connecting 30 AMEGs in series or 40 AMEGs in parallel, a voltage of 41.79 V or a current of 18.36 mA can be achieved, respectively, which is sufficient to directly power small commercial electronics. Moreover, three AMEG units connected in series generate enough power to run a small calculator and sustain a red LED for 72 h, and five units series-connected power a wearable watch for 144 h, demonstrating its potential as a wearable power source.

