Nanotechnology Now

Our NanoNews Digest Sponsors
Heifer International



Home > Press > Nano-imprinted photonic structures improve efficiency of silicon solar cells

nanoimprinted_solarcells.jpg: (left) Cross section SEM of the 2D periodic photonic nanostructures, (right) 1-µm-thin crystalline silicon solar cells on glass including the 2D periodic photonic nanostructures with obvious diffraction of light.
nanoimprinted_solarcells.jpg: (left) Cross section SEM of the 2D periodic photonic nanostructures, (right) 1-µm-thin crystalline silicon solar cells on glass including the 2D periodic photonic nanostructures with obvious diffraction of light.

Abstract:
Imec has successfully fabricated crystalline silicon (c-Si) solar cells including 2D periodic photonic nanostructures made with nano-imprint lithography. The result was an improvement in energy-conversion efficiency, compared to unpatterned cells, through a better absorption of the light spectrum. The technique shows a path to further reducing the thickness of solar cells while keeping the efficiency as high as possible.

Nano-imprinted photonic structures improve efficiency of silicon solar cells

Leuven, Belgium | Posted on March 16th, 2012

The reduction of the silicon wafer thickness from 150μm to 50μm and below is potentially the best way to decrease the cost of solar cells. At imec, we pursue this path through ultrathin-film crystalline silicon technologies. However, if thinner photoactive layers are used, the optical absorption is significantly reduced. This is especially so at the near-infrared region of the solar spectrum. A photon with a wavelength of 1μm needs an absorption depth as deep as 100μm. Losing this part of the spectrum reduces the overall conversion efficiency of the cells.

Recently, the field of photonics has come up with methods to manipulate light through specific structures that are smaller than the wavelengths. This makes it possible to use periodic photonic nanostructures to affect the motion of photons in a similar way as the periodicity of atoms in a semiconductor crystal affects the motion of electrons. But to do so, we need efficient patterning techniques with nanometer-scale resolution.

At imec, we used nano-imprint lithography to fabricate 2D periodic photonic nanostructures. Nano-imprint lithography is a recent top-down approach for fabricating nanometer-scale patterns. It is one of the best candidates to improve the light absorption while maintaining an acceptable manufacturing cost, but it is currently barely used for c-Si PV applications. The patterning is performed by direct deformation of the resist material through mechanical pressure and a subsequent etching step.

Compared to the standard solar cell texturing by wet-etching, subwavelength patterning using nano-imprint lithography has some advantages. First, there is less material waste upon etching (less than a micron is consumed) compared to the state-of-the-art texturing, where 5-10 microns are lost. And second, diffraction and scattering of light is possible at higher angles due to the dimensions of the nanopattern.

####

For more information, please click here

Contacts:
Barbara Kalkis
Maestro Marketing & PR

Copyright © IMEC

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

Beyond wires: Bubble technology powers next-generation electronics:New laser-based bubble printing technique creates ultra-flexible liquid metal circuits November 8th, 2024

Nanoparticle bursts over the Amazon rainforest: Rainfall induces bursts of natural nanoparticles that can form clouds and further precipitation over the Amazon rainforest November 8th, 2024

Nanotechnology: Flexible biosensors with modular design November 8th, 2024

Exosomes: A potential biomarker and therapeutic target in diabetic cardiomyopathy November 8th, 2024

Discoveries

Breaking carbon–hydrogen bonds to make complex molecules November 8th, 2024

Exosomes: A potential biomarker and therapeutic target in diabetic cardiomyopathy November 8th, 2024

Turning up the signal November 8th, 2024

Nanofibrous metal oxide semiconductor for sensory face November 8th, 2024

Announcements

Nanotechnology: Flexible biosensors with modular design November 8th, 2024

Exosomes: A potential biomarker and therapeutic target in diabetic cardiomyopathy November 8th, 2024

Turning up the signal November 8th, 2024

Nanofibrous metal oxide semiconductor for sensory face November 8th, 2024

Energy

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

Unveiling the power of hot carriers in plasmonic nanostructures August 16th, 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

Photonics/Optics/Lasers

New microscope offers faster, high-resolution brain imaging: Enhanced two-photon microscopy method could reveal insights into neural dynamics and neurological diseases August 16th, 2024

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

Enhancing electron transfer for highly efficient upconversion: OLEDs Researchers elucidate the mechanisms of electron transfer in upconversion organic light-emitting diodes, resulting in improved efficiency August 16th, 2024

Single atoms show their true color July 5th, 2024

Alliances/Trade associations/Partnerships/Distributorships

Manchester graphene spin-out signs $1billion game-changing deal to help tackle global sustainability challenges: Landmark deal for the commercialisation of graphene April 14th, 2023

Chicago Quantum Exchange welcomes six new partners highlighting quantum technology solutions, from Chicago and beyond September 23rd, 2022

CEA & Partners Present ‘Powerful Step Towards Industrialization’ Of Linear Si Quantum Dot Arrays Using FDSOI Material at VLSI Symposium: Invited paper reports 3-step characterization chain and resulting methodologies and metrics that accelerate learning, provide data on device pe June 17th, 2022

University of Illinois Chicago joins Brookhaven Lab's Quantum Center June 10th, 2022

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