Print 45 comment(s) - last by Boze.. on Apr 7 at 11:17 AM

Virus Battery  (Source: MIT)
Virus battery is expected to last longer than current lithium-ion batteries

The battery is one of those ubiquitous devices that most of us use in our everyday lives and never think much about. Everything from your car to your notebook to your cell phone uses a battery of some sort. With the need to move to greener methods to power vehicles, much research is being conducted on technologies that will make batteries better.

A group of researchers from MIT has announced that they were able to construct a battery using a common type of virus that is not harmful to humans called a bacteriophage. Angela Belcher, lead researcher on the team said that the new battery could one day be used to power electronics and even electric cars.

The battery was described in the April 2 online edition of Science. According to the researchers, the battery could be produced cheaply and would be environmentally benign thanks to the fact that the process can be produced at below room temperature and requires no harsh organic solvents and the materials used in the battery construction are non-toxic.

Materials used in traditional lithium-ion batteries can’t claim to be environmentally friendly. In a traditional battery, the negatively charged anode is typically made form graphite and the positively charged cathode is usually cobalt oxide or lithium-ion phosphate.

MIT reports that three years ago, Belcher led a team that was able to construct an anode from viruses. The viruses were coaxed into coating themselves with cobalt oxide and gold. After the coating process, the viruses assembled themselves into a nanowire.

The latest announcement comes after the team was able to complete what the researchers say is the more complicated process of building a powerful cathode to pair up with the anode. Cathodes are reportedly more difficult to build because they have to be highly conducting, but most materials appropriate for a cathode are highly insulating.

Members of the research team were able to create the cathode by genetically engineering viruses that coat themselves with iron phosphate and then grab carbon nanotubes to create a network of highly conductive material.

The viruses are engineered to bind to specific materials only. The carbon nanotubes in the team's cathode and each iron phosphate nanowire can be electrically connected to a conducting carbon nanotube network allowing electrons to travel through the nanotube networks and transfer energy in a short time.

The researchers say that adding the carbon nanotubes to the battery adds very little weight and increased the cathode’s conductivity. The researchers say that in experiments the cathode material could be charged and discharged at least 100 times before losing its capacity. The team points out that 100 cycles is less than current lithium-ion batteries, but the virus-powered batteries are expected to last longer between charges.

A prototype battery was packaged into a standard coin battery form factor and used to power an LED light. The prototype was shown to President Obama when MIT President Susan Hockfield talked to Obama about the need for funding to advance clean-energy technologies.

The team says their next plan is to create a battery with materials offering higher voltage and capacitance like manganese phosphate and nickel phosphate. Once the next generation of virus battery is ready, they could go into commercial production. Researchers at MIT working on another project announced last month that they created a battery that could recharge in seconds.

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RE: not dangerous to humans
By dardas on 4/3/2009 8:02:00 PM , Rating: 4
A virus is not exactly a living thing. it does not need to eat.
in simplistic terms, a virus is just a piece of RNA or DNA coated in a protein. if it enters a living organism's cell it inserts it's code into the cell's genome and re-writes it to produce more viruses.
that's all.
it does not need to eat,breath,reproduce.
some viruses target bacteria cells. some target plants, other target fungi, some target animals. the amount of viruses that can actually target humans and cause disease is minuscule.

RE: not dangerous to humans
By rudolphna on 4/3/2009 9:48:37 PM , Rating: 3
yes, and they certainly do not control it. I just like the word- bacterophage. fun to say.

RE: not dangerous to humans
By porkpie on 4/3/09, Rating: -1
RE: not dangerous to humans
By dardas on 4/4/2009 6:39:59 AM , Rating: 4
i'm sorry, but you are mistaken. viruses have NO METABOLISM. so there's no possible way of "eating". since "reproduction" indicates involvement of reproduction mechanisms, and viruses do not have any - they do not reproduce. they merely "replicate". in essence, the host cell is the one doing all the reproduction with it's own metabolic system.
now, about humans... well surely you can always take the word "simplistic" and abuse it to hell and back. what matters is that a virus really has no internal metabolitic elements, no complex cell structures etc.. just a dna/rna molecule, sorrounded by a simple protein barrier, and sometimes has a further more complex shell - that is usually derived from the host cell's membrane.

surely you can pick up a biology book, or at least Wikipedia?

RE: not dangerous to humans
By porkpie on 4/4/09, Rating: -1
RE: not dangerous to humans
By samoya22 on 4/4/2009 3:28:32 PM , Rating: 2
According to the USDA:

In a sense, viruses are not truly "living," but are essentially information (DNA or RNA) that float around until they encounter a suitable living host.

RE: not dangerous to humans
By Boze on 4/7/2009 11:17:52 AM , Rating: 2
Okay, you've been proven wrong twice. Unless you possess a biology-related degree or can provide some references contrary to all modern scientific understanding of viruses, its time to just admit you're wrong and move on with your life.

You'll be a better person for it, having learned humility, and we won't think you're stupid. Its a win-win.

By James Wood Carter on 4/5/2009 8:40:54 PM , Rating: 1
Not true, viruses are "molecular machines" made of protein and a form of nucleic acid. By themselves they have no capability to replicate, they require a host. Viruses hijack host machinery such as protein production and nucleic acid replication. This is also true when refering to prions and transposable elements. Viruses are non-living biological entities. Though that is starting to be less black and white.

"And boy have we patented it!" -- Steve Jobs, Macworld 2007
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