Close Menu
  • News
  • Industry
  • Solar Panels
  • Commercial
  • Residential
  • Finance
  • Technology
  • Carbon Credit
  • More
    • Policy
    • Energy Storage
    • Utility
    • Cummunity
What's Hot

Sol Systems adds to project portfolio with Texas acquisition | Projects Weekly

August 31, 2026

Climate-Linked Supply Chain Risk Is Already In Your P&L

August 26, 2026

Drake Plastics gets new carport project near Houston | Projects Weekly

August 17, 2026
Facebook X (Twitter) Instagram
Facebook X (Twitter) Instagram
Solar Energy News
Sunday, September 6
  • News
  • Industry
  • Solar Panels
  • Commercial
  • Residential
  • Finance
  • Technology
  • Carbon Credit
  • More
    • Policy
    • Energy Storage
    • Utility
    • Cummunity
Solar Energy News
Home - Technology - Localized polysilicon dilution improves the performance of TOPCon solar cells – SPE
Technology

Localized polysilicon dilution improves the performance of TOPCon solar cells – SPE

solarenergyBy solarenergyJanuary 8, 2026No Comments4 Mins Read
Facebook Twitter Pinterest LinkedIn Tumblr Email
Share
Facebook Twitter LinkedIn Pinterest Email

UNSW researchers have increased the efficiency of the TOPCon solar cells by locally thinning the back poly-Si layer, reducing parasitic absorption and maintaining wafer integrity. The champion cell built with this approach achieved 25.10% efficiency with improved bifaciality and maintained strong passivation.

January 8, 2026
Emiliano Bellini

Researchers from the University of New South Wales (UNSW) in Australia have attempted to improve the efficiency of TOPCon solar cells by reducing the thickness of the polysilicon (poly-Si) layers used in these PV devices to improve passivation and carrier transport.

“In our work, the thinning is only applied locally to the poly-Si layer on the back side, while the thickness of the crystalline silicon wafer remains unchanged,” said the study’s lead author, Ning Song. pv magazine. “As a result, the mechanical integrity of the wafer itself is not directly affected. The locally diluted poly-Si regions remain supported by the underlying crystalline silicon substrate, and the process does not introduce additional mechanical fragility at the wafer level.”

In the newspaper “Limiting parasitic optical losses in bifacial TOPCon solar cells through local thinning of polysilicon”, published in Solar energy materials and solar cells, the team explained that parasitic optical loss in the poly-Si layer is a major limitation for TOPCon cells. Long-wavelength photons can reach the back of the cell and bounce around, penetrating the poly-Si layer, where some of the energy is lost as heat instead of generating electricity.

Previous studies have shown that thinning the poly-Si layer can reduce parasite absorption. However, excessive thinning increases recombination losses due to metal paste reaching the wafer. To address this, the UNSW researchers used a laser-induced local thinning method to reduce the poly-Si layer in non-metallized areas, while leaving its thickness intact in metallized areas.

See also  Austrian startup offers dual-axis tracking system for agrivoltaic energy – SPE

The team implemented a three-step local dilution process integrated into the standard TOPCon manufacturing flow to produce low-temperature TOPCon devices (LT-TOPCon). A 1.3 nm interfacial oxide layer was deposited via plasma oxidation in a physical vapor deposition (PVD) chamber, followed by deposition of a 110 nm poly-Si layer at 250 °C. Activation of the dopant was achieved by annealing at 860 °C for 50 min. A 355 nm UV picosecond laser was used to induce amorphization in selected areas of the poly-Si layer.

“After the laser step, the wafers were etched in a 0.1 wt% sodium hydroxide (NaOH) solution at 40 °C to reduce the poly-Si thickness in the non-lasered areas to approximately 30 nm. Then, a layer of aluminum oxide (AlOx) was deposited on the front and layers of silicon nitride (SiNx) were deposited on both sides. The precursors were annealed in the same PECVD chamber to form the layers of silicon nitride (SiNx) passivation of the rear SiNx and front AlOx/SiNx stack,” the researchers explained.

The team also used Quokka 3, a silicon solar cell simulation tool, to evaluate the short-circuit current and overall efficiency of the new devices.

The champion LT-TOPCon cell achieved an energy conversion efficiency of 25.10%, representing an absolute improvement of 0.12% over a 24.98% efficient reference cell manufactured without the new process. The cell also achieved a fill factor of 83.37%, slightly below 83.45% of the reference, while the open-circuit voltage increased marginally from 727.9 mV to 729.8 mV. “This indicates that the LT process maintains or even improves surface passivation despite thinning of poly-Si,” the team noted.

See also  Solar Stack launches penetration -free pipe confirmations made by the US

Additionally, the cell showed a 6.6% improvement in bifaciality, and the researchers expect an additional 0.35% absolute efficiency gain through optimized laser-induced doping, improved process uniformity and advanced metallization schemes.

“The proposed process is designed to be compatible with existing TOPCon production flows and is based on industry-relevant steps such as laser processing and wet chemical etching, making it promising from a process integration perspective,” Song concluded.

This content is copyrighted and may not be reused. If you would like to collaborate with us and reuse some of our content, please contact: editors@pv-magazine.com.

Popular content

Source link

cells dilution improves localized performance polysilicon solar SPE TOPCon
Share. Facebook Twitter Pinterest LinkedIn Tumblr Email
solarenergy
  • Website

Related Posts

Türkiye will add 2.1 GW of solar energy in the first half of the year

July 30, 2026

Taiwan introduces new solar regulations for large buildings

July 29, 2026

British Solar Renewables wins call for 29 MW solar power plant

July 28, 2026
Leave A Reply Cancel Reply

Don't Miss
Solar Industry

Ideal Energy orders AI-enabled flexible HJT pilot line for space

By solarenergyJanuary 22, 20260

China-based PV equipment supplier Ideal Energy (Shanghai) Sunflower Semiconductor has completed an AI-enabled pilot line…

Machine Learning improves the accuracy of solar energy prediction

February 18, 2025

Researchers from West Virginia to deploy agrivoltaic energy on small livestock farms – SPE

June 15, 2024

Narada Power debuts 783 AH Cell, 8.3 MWH Solid State Battery – PV Magazine International

April 25, 2025
Stay In Touch
  • Facebook
  • Twitter
  • Pinterest
  • Instagram
  • YouTube
  • Vimeo
Our Picks

Sol Systems adds to project portfolio with Texas acquisition | Projects Weekly

August 31, 2026

Climate-Linked Supply Chain Risk Is Already In Your P&L

August 26, 2026

Drake Plastics gets new carport project near Houston | Projects Weekly

August 17, 2026

What Counts For Scope 3 Targets

August 12, 2026
Our Picks

Sol Systems adds to project portfolio with Texas acquisition | Projects Weekly

August 31, 2026

Climate-Linked Supply Chain Risk Is Already In Your P&L

August 26, 2026

Drake Plastics gets new carport project near Houston | Projects Weekly

August 17, 2026
About
About

Stay updated with the latest in solar energy. Discover innovations, trends, policies, and market insights driving the future of sustainable power worldwide.

Subscribe to Updates

Get the latest creative news and updates about Solar industry directly in your inbox!

Facebook X (Twitter) Instagram Pinterest
  • Contact
  • Privacy Policy
  • Terms & Conditions
© 2026 Tsolarenergynews.co - All rights reserved.

Type above and press Enter to search. Press Esc to cancel.