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March 26, 2026Progress in Photovoltaics Research and Applications2 citations

Enhancing Broadband Antireflection Performance of Silicon Solar Cells Using Grass‐Like Alumina via Atomic Layer Deposition

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JXJiahui XuYLY. LiWZWenjing Zhang

Key Points

  • The aim is to enhance broadband antireflection performance in silicon solar cells using nano-grass-like alumina structures.
  • Fabricated nano-grass-like alumina structures on silicon solar cells
  • Tested under AM1.5G and AM0 spectra from 300-1180 nm
  • Measured weighted reflectance and short-circuit current density
  • Assessed surface recombination through minority carrier lifetime and IV measurements
  • Conducted post-encapsulation reflectance evaluations
  • Reduced weighted reflectance by 0.9%abs and 1.1%abs under different spectra
  • Increased integrated short-circuit current density by 0.7 and 1 mA/cm²
  • No additional surface recombination observed after integration
  • Demonstrated low optical reflection loss at high incident angles
  • Retained superior broadband antireflective properties post-encapsulation

Abstract

ABSTRACT Nano‐grass‐like alumina structures were fabricated on the front surface of tunnel oxide passivated contact (TOPCon) silicon solar cells to improve broadband antireflection performance. Under the AM1.5G and AM0 spectra from 300‐ to 1180‐nm wavelengths, the nano‐grass‐like alumina structures reduce the weighted reflectance by 0.9%abs and 1.1%abs. The integrated short‐circuit current density increases by 0.7 and 1 mA/cm 2 . These photocurrent gains are primarily caused by reducing the front‐side reflection losses at short wavelengths. Additional benefits arise from reduced front‐side escape losses at medium and long wavelengths. No additional surface recombination is observed after nano‐grass‐like alumina structure integration, supported by minority carrier lifetime and IV measurements. The nano‐grass‐like alumina structures also exhibit excellent low optical reflection loss at high incident angles. Finally, post‐encapsulation reflectance measurements confirmed that the nano‐grass‐like alumina structures retained superior broadband antireflective properties.

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Cite This Study

Xu et al. (2026) studied this question.

synapsesocial.com/papers/69c4cd5afdc3bde4489199c5https://doi.org/10.1002/pip.70098
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