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September 5, 2026Advanced Energy Materials

Field‐Regulated Triboelectric Nanogenerators for Enhanced Energy Conversion

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Authors

WTWenyi TuECEndian CuiDYDanni Yang

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Overview

Review reveals external-field charge modulation mechanisms in triboelectric nanogenerators, highlighting strategies to enhance low-frequency mechanical energy harvesting.

Key Points

  • Synthesize external-field coupling strategies using optical, thermal, magnetic, and electric fields to overcome surface charge density and impedance constraints in triboelectric nanogenerators.
  • Analyzed fundamental operating principles grounded in Maxwell's displacement current under low-frequency and low-intensity mechanical excitations.
  • Categorized multifield modulation pathways including localized surface plasmon resonance, photocarrier excitation, pyroelectric effects, magnetic structures, and charge pumping.
  • Demonstrated that external-field coupling directly regulates interfacial charge generation, separation, transport, and retention beyond conventional mechanical contact electrification.
  • Identified critical developmental barriers in unified theoretical modeling, responsive materials discovery, power management, and long-term device stability.

Cite This Study

Tu et al. (2026) studied this question.

synapsesocial.com/papers/6a9bd4436b95aff0620ebc17https://doi.org/10.1002/aenm.71464
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