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

A deep learning model tracks the status of the EV battery with high precision

March 6, 2026

Mitsubishi Electric Trane announces new heat pump line for hydronic heating – SPE

March 6, 2026

Origis is developing a 413 MW solar portfolio in West Texas

March 6, 2026
Facebook X (Twitter) Instagram
Facebook X (Twitter) Instagram
Solar Energy News
Friday, March 6
  • News
  • Industry
  • Solar Panels
  • Commercial
  • Residential
  • Finance
  • Technology
  • Carbon Credit
  • More
    • Policy
    • Energy Storage
    • Utility
    • Cummunity
Solar Energy News
Home - Technology - Heterojunction solar cell based on metal oxides achieves an efficiency of 23.3% – SPE
Technology

Heterojunction solar cell based on metal oxides achieves an efficiency of 23.3% – SPE

solarenergyBy solarenergySeptember 28, 2024No Comments3 Mins Read
Facebook Twitter Pinterest LinkedIn Tumblr Email
Share
Facebook Twitter LinkedIn Pinterest Email

Scientists from TU Delft used plasma treatment with boron (PTB) to build heterojunction solar cells, based on a hole transport layer made of thin films of transition metal oxide (TMO). The device showed a significant balance between defect rate and carrier transportation and achieved remarkable levels of efficiency.

September 27, 2024 Emiliano Bellini

Scientists from Delft University of Technology in the Netherlands have fabricated an n-type silicon heterojunction (SHJ) solar cell based on a hole transport layer (HTL) made with thin films of transition metal oxide (TMO).

In the newspaper “Universal interface engineering method for applying transition metal oxides in silicon heterojunction solar cells”, published in Solar energy materials and solar cellsthe researchers said that TMO materials have a large band gap and are used in heterojunction PV devices to increase their short-circuit current.

“This work presents a successful application of interface engineering methods to improve the performance of SHJ solar cells using thin films of polytungstate (WOx) and vanadium suboxide (V2Ox),” the study’s lead author Liqi Qao shared. pv magazine. “By precisely controlling the oxygen content in the TMO films, we mitigated the damaging interfacial reactions between the TMOs and the silicon passivation layers, resulting in improved efficiency of the solar cells.”

The scientists selected these two materials because they ‘establish’ a balance between the amount of oxygen vacancies and their ability for selective transport. They applied boron plasma treatment (PTB) to alleviate the interfacial reaction of TMO with the substrate via interface engineering.

This treatment reportedly alters the oxygen content in TMO films, improving their electronic properties.

See also  Vietnam UPS Wind, Solar DIGHTS as the demand for energy is increasing

The group built a WOx-based cell and a V2Ox-based device. In the first cell, the thickness of the WOx film was 2 nm, while the V2Ox layer used in the second device was 2 nm thick.

The 2 cm x 2 cm devices were both based on 4-inch float-zone (FZ) wafers processed in tetramethylammonium hydroxide (TMAH) stacks, hydrogenated amorphous silicon (a-Si:H) stacks, and an anti-reflective coating based on magnesium fluoride (MgF2).

Tested under standard lighting conditions, the WOx-based cell was able to achieve an energy conversion efficiency of 23.30% and a fill factor of 80.80%. The other device achieved values ​​of 22.04% and 74.88% respectively.

“Our TMO-based FJ-SHJ [front junction silicon heterojunction] Solar cell results show that the PTB is a method that creates an optimal surface condition for the deposition of TMOs and achieves a desirable balance between the amount of defects and the carrier transport of the film, leading to improved performance of TMO-based SHJ solar panels . cells,” the researchers 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

achieves based cell efficiency heterojunction Metal oxides solar SPE
Share. Facebook Twitter Pinterest LinkedIn Tumblr Email
solarenergy
  • Website

Related Posts

Mitsubishi Electric Trane announces new heat pump line for hydronic heating – SPE

March 6, 2026

Origis is developing a 413 MW solar portfolio in West Texas

March 6, 2026

New Jersey expands state community solar program by 3 GW

March 6, 2026
Leave A Reply Cancel Reply

Don't Miss
Solar Industry

Longi unveils 34.58%-efficient Tandem Perovskiet-Silicon solar cell based on asymmetrical self-assembled monolaag

By solarenergyJuly 10, 20250

Published in a new scientific article in natureThe Chinese manufacturer presented a new Tandem Perovskiet-Silicon…

European developers signed 19 PPAs for 630 MW in September – SPE

October 21, 2025

SolarEdge, Axle Energy partner in VPP offering

November 20, 2024

Lower costs needed for competitive green hydrogen – SPE

June 14, 2024
Stay In Touch
  • Facebook
  • Twitter
  • Pinterest
  • Instagram
  • YouTube
  • Vimeo
Our Picks

A deep learning model tracks the status of the EV battery with high precision

March 6, 2026

Mitsubishi Electric Trane announces new heat pump line for hydronic heating – SPE

March 6, 2026

Origis is developing a 413 MW solar portfolio in West Texas

March 6, 2026

New Jersey expands state community solar program by 3 GW

March 6, 2026
Our Picks

A deep learning model tracks the status of the EV battery with high precision

March 6, 2026

Mitsubishi Electric Trane announces new heat pump line for hydronic heating – SPE

March 6, 2026

Origis is developing a 413 MW solar portfolio in West Texas

March 6, 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.