Nanotechnology Now

Our NanoNews Digest Sponsors
Heifer International



Home > Press > Nanostructures improve solar cell efficiency

Abstract:
To make solar cells a competitive alternative to other renewable energy sources, researchers are investigating different alternatives. A step in the right direction is through new processes that change the surfaces of silicon solar cells. By creating different nanostructures on the surfaces, the energy harvesting properties of solar cells can be improved.

Nanostructures improve solar cell efficiency

Italy | Posted on May 28th, 2011

Within the EU-funded research project N2P (Nano To Production) researchers work on nanostructured surfaces of solar cells. At the Fraunhofer Institute in Dresden, Germany, researchers have focused on the development of atmospheric pressure plasma chemical etching (AP-PCE) processes. This technology is as an alternative to the wet chemical processing approach, used in the solar industry. The advantages of AP-PCE over the etching technology based on wet chemical processing are, for example, reduced chemical waste, cost efficiency and reduced handling. AP-PCE is used for modifying crystalline silicon solar wafers‚ surfaces down to the nanoscale. The researchers have achieved a one-percent improvement in solar cell efficiency, from 16 to 17 percent, by making the rear surface very smooth.

Within the N2P research project scientists at the École Polytechnique Fédérale de Lausanne (EPFL) in Neuchatel, Switzerland, are instead working on improving different solar cells, the thin film silicon solar cells. Currently, these solar cells can only harvest about seven percent of the sunlight, which is about 40 percent less efficient compared to conventional wafer silicon cells. However, the thin film solar cells are cheaper and more eco-friendly because their production demands less time, material and energy. The researchers in Switzerland are changing the top glass structure of the solar cell, by depositing a layer of nanosized crystals from a transparent conductive oxide (TCO) onto the glass. This layer gives a high scattering effect and the light beam generates more electrons when it travels a longer distance though the cell, which enhances the cell‚s light absorption. The researchers have managed to achieve a 30 percent increase in efficiency in comparison with stand
ard thin film solar cells.

Another process that could increase the efficiency of thin film silicon solar cells, through changing the surface structures, includes ultrafast pulsed laser irradiation. Researchers at Singapore Institute of Manufacturing Technology have shown that this irradiation makes a nanospike pattern on the silicon surface which reduces reflection of the light from the surface. More light will therefore be absorbed.

New processes which create nanostructured surfaces are improving solar cell efficiency substantially. With lower manufacturing costs in the future the interest in solar cell investments may increase impressively.

####

For more information, please click here

Contacts:
Elisabeth Schmid
Phone: +39 02 7002572
Fax: +39 02 7002540
E-mail:

Copyright © youris.com

If you have a comment, please Contact us.

Issuers of news releases, not 7th Wave, Inc. or Nanotechnology Now, are solely responsible for the accuracy of the content.

Bookmark:
Delicious Digg Newsvine Google Yahoo Reddit Magnoliacom Furl Facebook

Related News Press

News and information

New class of protein misfolding simulated in high definition: Evidence for recently identified and long-lasting type of protein misfolding bolstered by atomic-scale simulations and new experiments August 8th, 2025

Sensors innovations for smart lithium-based batteries: advancements, opportunities, and potential challenges August 8th, 2025

Deciphering local microstrain-induced optimization of asymmetric Fe single atomic sites for efficient oxygen reduction August 8th, 2025

Lab to industry: InSe wafer-scale breakthrough for future electronics August 8th, 2025

Discoveries

Deciphering local microstrain-induced optimization of asymmetric Fe single atomic sites for efficient oxygen reduction August 8th, 2025

ICFO researchers overcome long-standing bottleneck in single photon detection with twisted 2D materials August 8th, 2025

New molecular technology targets tumors and simultaneously silences two ‘undruggable’ cancer genes August 8th, 2025

Simple algorithm paired with standard imaging tool could predict failure in lithium metal batteries August 8th, 2025

Announcements

Sensors innovations for smart lithium-based batteries: advancements, opportunities, and potential challenges August 8th, 2025

Deciphering local microstrain-induced optimization of asymmetric Fe single atomic sites for efficient oxygen reduction August 8th, 2025

Japan launches fully domestically produced quantum computer: Expo visitors to experience quantum computing firsthand August 8th, 2025

ICFO researchers overcome long-standing bottleneck in single photon detection with twisted 2D materials August 8th, 2025

Energy

Sensors innovations for smart lithium-based batteries: advancements, opportunities, and potential challenges August 8th, 2025

Simple algorithm paired with standard imaging tool could predict failure in lithium metal batteries August 8th, 2025

Portable Raman analyzer detects hydrogen leaks from a distance: Device senses tiny concentration changes of hydrogen in ambient air, offering a dependable way to detect and locate leaks in pipelines and industrial systems April 25th, 2025

KAIST researchers introduce new and improved, next-generation perovskite solar cell​ November 8th, 2024

Solar/Photovoltaic

KAIST researchers introduce new and improved, next-generation perovskite solar cell​ November 8th, 2024

Groundbreaking precision in single-molecule optoelectronics August 16th, 2024

Development of zinc oxide nanopagoda array photoelectrode: photoelectrochemical water-splitting hydrogen production January 12th, 2024

Shedding light on unique conduction mechanisms in a new type of perovskite oxide November 17th, 2023

NanoNews-Digest
The latest news from around the world, FREE




  Premium Products
NanoNews-Custom
Only the news you want to read!
 Learn More
NanoStrategies
Full-service, expert consulting
 Learn More











ASP
Nanotechnology Now Featured Books




NNN

The Hunger Project