Cover story: A flexible moisture-enabled electric generator (HAMEG) based on electrospun PAN nanofibers is presented. With CNT-induced conductive networks and asymmetric SDBS loading, humidity-driven ion gradients enable directional ion migration and electrical output. The device not only harvests energy from ambient moisture but also serves as a self-powered sensor for humidity and touch, offering a promising strategy for wearable and environmental applications.
Phonon Engineering in Two-Dimensional Materials for Thermal Devices
Jiawei Li, Sikun Chen, Haidong Wang
2026, 2(1): 3. doi: 10.53941/ldm.2026.100003
Spatio-Temporal Confinement in Two-Dimensional Channels for Neuromorphic Computing
Honglin Wang, Hongwei Zhu
2026, 2(1): 2. doi: 10.53941/ldm.2026.100002

Flexible Nanofiber Moisture-Enabled Electric Generator Based on Horizontal Asymmetric Structure
Maoshuang Ran, Chunqiao Fu, Xulei Lu, Tingting Yang
2026, 2(1): 1. doi: 10.53941/ldm.2026.100001
