Jump to content
 







Main menu
   


Navigation  



Main page
Contents
Current events
Random article
About Wikipedia
Contact us
Donate
 




Contribute  



Help
Learn to edit
Community portal
Recent changes
Upload file
 








Search  

































Create account

Log in
 









Create account
 Log in
 




Pages for logged out editors learn more  



Contributions
Talk
 



















Contents

   



(Top)
 


1 Structure  





2 Purpose  



2.1  Cost  





2.2  Environment  





2.3  Research  







3 See also  





4 References  














Nano flake







Add links
 









Article
Talk
 

















Read
Edit
View history
 








Tools
   


Actions  



Read
Edit
View history
 




General  



What links here
Related changes
Upload file
Special pages
Permanent link
Page information
Cite this page
Get shortened URL
Download QR code
Wikidata item
 




Print/export  



Download as PDF
Printable version
 
















Appearance
   

 






From Wikipedia, the free encyclopedia
 

(Redirected from Nanoflake)

In a general meaning a Nano flake is a flake (that is, an uneven piece of material with one dimension substantially smaller than the other two) with at least one nanometric dimension (that is, between 1 and 100 nm). A flake is not necessarily perfectly flat but it is characterized by a plate-like form or structure. There are nanoflakes of all sorts of materials.

In a more restricted meaning, in the context of solar energy, Nano flakes are a type of semiconductor that has potential for solar energy creation as the product itself is only in the prototype phase. With its crystalline structure the crystals are able to absorb light and harvest 30 percent of solar energy directed at its surface.

Structure

[edit]

Nano flakes have a structure that contains tiny crystals in which millions of these crystals could fit into a single square centimeter. The tiny crystals absorb the sunlight and use the solar energy to convert it to electricity. This perfect crystalline structure is why this product can revolutionize solar energy.[1] The large surface to volume ratio and the texture of the surface of this nano structure provides a larger absorption rate of the sun's light energy. Also researchers are working on trying to combine it with different semiconducting materials since the usual requirements of a need for a similar crystal structure for the carrier substrate is less stressed in the Nano flakes structure. The carrier substrate in the Nano flakes purpose is to permit growth of the nano structures and works as a contact for the Nano structures when they are actively absorbing the sun's energy.[2]

Purpose

[edit]

Solar energy obtained from the Nano flakes can help benefit in a couple of ways. Nano flakes can potentially help lower the cost of solar energy. Also since more solar energy can theoretically be obtained from Nano flakes, their use can potentially keep the earth's environment cleaner by reducing the need for fossil fuels.

Cost

[edit]

The high cost of solar energy stems from the difficulty of converting the solar energy into electricity for use, and less than 1 percent of the world's electricity comes from the sun because of this process.[3] Nano flakes can potentially help with the economic issues of solar energy by lowering the cost due to an easier process and a better outcome of energy. Nano flake technology can potentially make it easier to convert solar energy into electricity estimated at twice the amount that today's solar cells can harvest. This new technology can also potentially lower the cost of solar energy because it allows for a reduction in expensive semiconducting silicon.[1] Energy loss is also potentially reduced with a shorter distance of the solar energy transportation across smaller Nano flakes.[4]

Environment

[edit]

Nano flake technology can also help keep the environment cleaner as the sun as the source it produces clean pure sustainable energy that can be converted into electricity.[3] While fossil fuel is the primary energy source for electricity, using solar energy obtained from Nano flakes will lower dependence on fossil fuels. When fossil fuels are burned for use they release a toxic gas which has a huge impact on earth's pollution.[4] Also the process of obtaining these fossil fuels is not good for the environment, whether it be mining for coal, drilling for oil, or hydraulic fracturing of the earth's surface to reach the oil and gas.[5]

Research

[edit]

One researcher working on Nano flake technology is Dr. Martin Aagesen at the Niels Bohr Institute at the University of Copenhagen, who holds a PhD from the Nano Science Center. Aagesen discovered and published information about the science of Nano flakes in 2007.[6] Aagesen is Chief Executive Officer of SunFlake, launched from the Nano Science Center. Funding for Nano flake science came from Danish Venture Capital fund SEED capital and University of Copenhagen.[2]

See also

[edit]

References

[edit]
  1. ^ a b "Nano Flakes promise greater solar energy efficiency". www.gizmag.com. Retrieved 2016-02-03.
  • ^ a b "Nano-flake structure boosts solar cell performance - Eco-innovation Action Plan - European Commission". Eco-innovation Action Plan. Retrieved 2016-02-11.
  • ^ a b "Nano Flakes May Revolutionize Solar Cells". www.sciencedaily.com. Retrieved 2016-02-03.
  • ^ a b "Uncover the Benefits of Solar Energy". solarcity.com. Retrieved 2016-02-11.
  • ^ Boudet, Hilary; Clarke, Christopher; Bugden, Dylan; Maibach, Edward; Roser-Renouf, Connie; Leiserowitz, Anthony (2014-02-01). ""Fracking" controversy and communication: Using national survey data to understand public perceptions of hydraulic fracturing". Energy Policy. 65: 57–67. doi:10.1016/j.enpol.2013.10.017.
  • ^ "Nano Flakes Could Make PV More Efficient". www.renewableenergyworld.com. Retrieved 2016-02-02.

  • Retrieved from "https://en.wikipedia.org/w/index.php?title=Nano_flake&oldid=1167056900"

    Category: 
    Nanotechnology
     



    This page was last edited on 25 July 2023, at 11:58 (UTC).

    Text is available under the Creative Commons Attribution-ShareAlike License 4.0; additional terms may apply. By using this site, you agree to the Terms of Use and Privacy Policy. Wikipedia® is a registered trademark of the Wikimedia Foundation, Inc., a non-profit organization.



    Privacy policy

    About Wikipedia

    Disclaimers

    Contact Wikipedia

    Code of Conduct

    Developers

    Statistics

    Cookie statement

    Mobile view



    Wikimedia Foundation
    Powered by MediaWiki