Aerosol Jet Printed Solar Cells Achieved Efficiencies of over 20 Percent

The world-renowned Fraunhofer Institute for Solar Energy Systems (ISE) has continued progress in producing high-efficiency solar cells using Aerosol Jet printing equipment developed by Optomec. ISE's most recent results were presented on October 1, 2008, at the Crystal Clear "Workshop on Metallization for Crystalline Silicon Solar Cells" held in Ultrecht, The Netherlands. The Aerosol Jet printed solar cells achieved efficiencies of over 20% when combined with Light Induced Plating (LIP) and Annealing, versus an average efficiency for screen-printed mono-crystalline front junction silicon solar cells in the range of 16–18%. The narrower, higher integrity collector lines produced by Aerosol Jet deposition systems have higher conductivity and a lower shadowing effect, thereby increasing cell efficiency. In addition, because the process is non-contact, Optomec's Aerosol Jet system can print on thinner wafers and with less breakage than screen printing.

The Fraunhofer study states, "So far, the front side metallization holds the main potential for a further increase in cell efficiency. The main targets are the reduction of the metallized area to reduce shading losses, a low contact resistivity to a lowly doped emitter, and a high line conductivity to transport the current as loss-free as possible out of the cell.

"The cells fabricated in this work combine the advantages of a new advanced front side metallization with an already established rear contact process, which are both industrially feasible. The front side grid was aerosol jet printed and light induced plated achieving line widths below 45 micron. On solar cells with an 110V/sq emitter record cell efficiencies of 20.3% were measured. In fact in a recent work, Fraunhofer ISE has found that the optical width of an aerosol jet printed and plated contact embedded in a module is only 43% of its geometrical width further reducing fill factor and providing increased cell/module efficiencies."

The study goes on to highlight that the shape of these collector lines helps to promote the reflection of light back onto the solar cell: "In fact in a recent work, we have found that the optical width of an aerosol [jet]-printed and plated contact embedded in a module is only 43% of its geometrical width."

For volume production applications, Optomec has developed a high-throughput 40-nozzle Aerosol Jet deposition head that prints a solar cell every 2.5 to 3 seconds. Additionally, the non-contact nature of the Aerosol Jet system enables high-yield printing on thinner photovoltaic wafers.

Optomec is the world-leading provider of additive manufacturing systems for high-performance applications in the Electronics, Biomedical, and Aerospace & Defense markets. These systems utilize Optomec's proprietary Aerosol Jet technology and LENS® powder-metal fabrication technology. The company has a global customer base of industry-leading manufacturers.

LENS is a registered trademark of Sandia Corporation.

Aerosol Jet is a registered trademark of Optomec, Inc.

Citations

Please use one of the following formats to cite this article in your essay, paper or report:

  • APA

    Optomec. (2019, February 15). Aerosol Jet Printed Solar Cells Achieved Efficiencies of over 20 Percent. AZoNano. Retrieved on April 18, 2024 from https://www.azonano.com/news.aspx?newsID=9014.

  • MLA

    Optomec. "Aerosol Jet Printed Solar Cells Achieved Efficiencies of over 20 Percent". AZoNano. 18 April 2024. <https://www.azonano.com/news.aspx?newsID=9014>.

  • Chicago

    Optomec. "Aerosol Jet Printed Solar Cells Achieved Efficiencies of over 20 Percent". AZoNano. https://www.azonano.com/news.aspx?newsID=9014. (accessed April 18, 2024).

  • Harvard

    Optomec. 2019. Aerosol Jet Printed Solar Cells Achieved Efficiencies of over 20 Percent. AZoNano, viewed 18 April 2024, https://www.azonano.com/news.aspx?newsID=9014.

Tell Us What You Think

Do you have a review, update or anything you would like to add to this news story?

Leave your feedback
Your comment type
Submit

While we only use edited and approved content for Azthena answers, it may on occasions provide incorrect responses. Please confirm any data provided with the related suppliers or authors. We do not provide medical advice, if you search for medical information you must always consult a medical professional before acting on any information provided.

Your questions, but not your email details will be shared with OpenAI and retained for 30 days in accordance with their privacy principles.

Please do not ask questions that use sensitive or confidential information.

Read the full Terms & Conditions.