Fraunhofer ISE Develops World's Most Efficient Solar Cell

Researchers used a new antireflection coating to develop this best four-junction solar cell to date.

Thanks to improved antireflection layers, the efficiency of the best four-junction solar cell to date improved from 46.1 to 47.6 percent. (Image: Fraunhofer ISE)

Researchers at the Fraunhofer Institute for Solar Energy Systems ISE, using a new antireflection coating, have successfully increased the efficiency of the best four-junction solar cell to date from 46.1 to 47.6 percent at a concentration of 665 suns. This is a global milestone, as there is currently no solar cell with a higher efficiency worldwide. The results are presented today at the 2nd International tandem PV Workshop, taking place in Freiburg, Germany.

For the last two years, Fraunhofer ISE has been working on an ambitious project called "50 Percent." The aim of the project, which is funded by the German Federal Ministry for Economic Affairs and Climate Action BMWK, is to develop a solar cell with 50 percent efficiency for the first time. To achieve this, each individual layer of the complex multi-junction solar cell undergoes further optimization. Improvements in the process technology are incorporated for metal contacts and antireflection layers. Now, the project team has achieved the first breakthrough: Their latest solar cell under concentrated sunlight achieves an efficiency of 47.6 percent, reports Fraunhofer.

"We are thrilled with this result, which was achieved only one year after the opening of our new Center for High-Efficiency Solar Cells," says Dr. Frank Dimroth, department head of III-V Photovoltaics and Concentrator Technology at Fraunhofer ISE. "In our research, we aim to make concentrating photovoltaics even more efficient and competitive, as we believe that this is the most sustainable form of renewable electricity generation."

The layer structure of the new solar cell was developed back in 2016 together with the French company Soitec Inc., which designs and manufactures innovative semiconductor materials. The upper tandem solar cell is made of gallium indium phosphide (GaInP) and aluminum gallium arsenide(AlGaAs), which was bonded by Soitec onto a lower tandem solar cell made of gallium indium arsenide phosphide (GaInAsP) and gallium indium arsenide(GaInAs).

Read more: Korean Scientists Develop Stretchable and Printable Free-Form Lithium-Ion Batteries

Now an improved contact layer and a 4-layer antireflection coating were applied to the tandem cell structure in Fraunhofer ISE’s Center for High-Efficiency Solar Cells. These measures reduce the resistance losses and the reflection on the front side of the cell, which is spectrally sensitive within a broad range of 300 and 1780 nanometers. Conventional solar cells made of silicon absorb sunlight only up to a wavelength of 1200 nanometers and thus do not require such a broadband antireflection coating.

Multi-junction solar cells made of III-V compound semiconductors have always been among the most efficient solar cells in the world. They reach their highest potential when the incoming sunlight is concentrated by lenses onto miniature solar cell devices of just a few square millimeters in size. "Possible applications of such highly efficient tandem solar cells include concentrator photovoltaic systems, which contribute to efficient power generation in sun-rich countries,” says Prof. Dr. Stefan Glunz, division director of Photovoltaics Research at Fraunhofer ISE. "With tandem photovoltaics, it is possible to leave the limitations of single-junction solar cells behind and ultimately achieve a reduction in solar power costs."

Jürgen Thalmayer
June 22, 2022

Innovation of the Month

Do you want to discover more, visit the website
Visit Website

Other news

With Tap Strap 2 You Can Control Any Bluetooth-Enabled Device with Gesture

Tap Systems, a Los Angeles, CA-based startup made headlines when it introduced futuristic...

BIOTRONIK Wins FDA Clearance for its Vital Data Sensor in BIOMONITOR IIIm ICM

German biomedical company BIOTRONIK has won FDA clearance for the Vital Data Sensor, a body temp...

Migraine Treatment Wearable Approved in Japan

Japanese Ministry of Health, Labor and Welfare (MHLW) has approved neuromodulation migraine device.

New Sensor Detects Diabetes and Stroke

Researchers in Singapore have developed a wearable diabetes tracker.
Discover more