An inexpensive method for graphene production was reported on Gizmag on 4/30. This will be a game changer for graphene. Perhaps you should e-mail me about getting on my e-mail blast list. I know that this news item was in Section 24 (my nanotechnology section) of my newsletter. I send the newsletter out sporadically, sometimes every week and sometimes only once per month.
This one should be in aiche051514.doc, a monster file. E-mail me at jbrenner@fit.edu if interested in the newsletter. There are always a couple of new developments on graphene.
The way Intel makes silicon-based chips uses finer and finer lithographic methods using higher and higher energy (now deep into the UV). Graphene circuitry will require a different, bottom-up approach. This is one of the major themes of my nanotechnology course.
Several years ago, carbon nanotubes (CNTs) were the rage both because of a high strength-to-weight ratio and their high conductivity. CNTs have not become mainstream because cost of production has not come down sufficiently. The purification step is possible, but it is enough of a pain that it will never be cost-effective.
Graphene, on the other hand, is not hard at all to make. I could teach any of you how to do it in a few hours. Imagine a single layer of graphite. Many of you have probably peeled graphite layers for hobby applications before, for example. Because of its cost and ease of production, graphene will be a game changer, particularly in flexible electronics.
You seem to know a lot about graphene, jbrenner. Any additional links you could post for the rest of us to get up to speed would be greatly appreciated. I'll email you about your newsletter.
Inside http://my.fit.edu/~jbrenner/nanotechnolo... with name = fltech and password = brenner, download graphene.tif and graphene2012.tif by right clicking on them. If you try to read those .tif files using QuickTime, you will only see page 1. Windows Photo Viewer should allow you to see all the pages.
Well I am in the heart of Intel making the latest chips and have heard nary a thing about graphene. It is possible that it is so different that it will take a whole different road, but if it is, it is very, very quite.
While Lockheed Martin's desalination work is interesting, I think BASF's approach with graphene-based inks are what will be revolutionary. You can fill up an inkjet printer cartridge with graphene dispersed in a solvent and print the circuits with an inkjet printer. It's not as cheap as silicon technology, but for flexible electronics, this is the path to success.
Yes indeed. It would solve a lot of water issues, especially in SW or even SE US. Also, since Sea Level appears to be rising, conversion to FW , while maybe seemingly negligible, would serve as a counterbalance. Just need to make a metric cubic butt-ton of it. Would help Africa and ME as well.
Desalination is already pretty close to financially even with traditional water purification methods here on the Florida east coast. Several cities already use desalination.
www.gizmag.com/graphene-kitchen-blender/...
This one should be in aiche051514.doc, a monster file. E-mail me at jbrenner@fit.edu if interested in the newsletter. There are always a couple of new developments on graphene.
Graphene, on the other hand, is not hard at all to make. I could teach any of you how to do it in a few hours. Imagine a single layer of graphite. Many of you have probably peeled graphite layers for hobby applications before, for example. Because of its cost and ease of production, graphene will be a game changer, particularly in flexible electronics.
with name = fltech and password = brenner,
download graphene.tif and graphene2012.tif by right clicking on them. If you try to read those .tif files using QuickTime, you will only see page 1. Windows Photo Viewer should allow you to see all the pages.
http://www.forbes.com/sites/tomkonrad/20...