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Showing posts with label Hardware. Show all posts
Showing posts with label Hardware. Show all posts

Sunday, April 20, 2014

Sugar-powered biobattery has 10 times the energy storage of lithium: Your smartphone might soon run on enzymes


As you probably know, from sucking down cans of Coke and masticating on candy, sugar — glucose, fructose, sucrose, dextrose — is an excellent source of energy. Biologically speaking, sugar molecules are energy-dense, easy to transport, and cheap to digest. There is a reason why almost every living cell on Earth generates its energy (ATP) from glucose. Now, researchers at Virginia Tech have successfully created a sugar-powered fuel cell that has an energy storage density of 596 amp-hours per kilo — or “one order of magnitude” higher than lithium-ion batteries. This fuel cell is refillable with a solution of maltodextrin, and its only by products are electricity and water. The chief researcher, Y.H. Percival Zhang, says the tech could be commercialized in as soon as three years.


Now, it’s not exactly news that sugar is an excellent energy source. As a culture we’ve probably known about it since before we were Homo sapiens. The problem is, unless you’re a living organism or some kind of incendiary device, extracting that energy is difficult. In nature, an enzymatic pathway is used — a production line of tailor-made enzymes that meddle with the glucose molecules until they become ATP. Because it’s easy enough to produce enzymes in large quantities, researchers have tried to create fuel cells that use artificial “metabolism” to break down glucose into electricity (biobatteries), but it has historically proven very hard to find the right pathway for maximum efficiency and to keep the enzymes in the right place over a long period of time.


A diagram of the enzymatic fuel cell. The little Pac-Man things are enzymes.
Now, however, Zhang and friends at Virginia Tech appear to have built a high-density fuel cell that uses an enzymatic pathway to create a lot of electricity from glucose. There doesn’t seem to be much information on how stable this biobattery is over multiple refills, but if Zhang thinks it could be commercialized in three years, that’s a very good sign. Curiously, the research paper says that the enzymes are non-immobilized — meaning Zhang found a certain battery chemistry that doesn’t require the enzymes to be kept in place… or, alternatively, that it will only work for a very short time.

The Virginia Tech biobattery uses 13 enzymes, plus air (it’s an air-breathing biobattery), to produce nearly 24 electrons from a single glucose unit. This equates to a power output of 0.8 mW/cm, current density of 6 mA/cm, and energy storage density of 596 Ah/kg. This last figure is impressive, at roughly 10 times the energy density of the lithium-ion batteries in your mobile devices. [Research paper: doi:10.1038/ncomms4026 - "A high-energy-density sugar biobattery based on a synthetic enzymatic pathway"]

If Zhang’s biobatteries pan out, you might soon be recharging your smartphone by pouring in a solution of 15% maltodextrin. That battery would not only be very safe (it produces water and electricity), but very cheap to run and very green. This seems to fit in perfectly with Zhang’s homepage, which talks about how his main goals in life are replacing crude oil with sugar, and feeding the world.

The other area in which biobatteries might be useful is powering implanted devices, such as pacemakers — or, in the future, subcutaneous sensors and computers. Such a biobattery could feed on the glucose in your bloodstream, providing an endless supply of safe electricity for the myriad implants that futuristic technocrats will surely have.
 

Monday, September 6, 2010

Nano Switches that Store More Data Head to Market Products featuring memristors could appear in 2013.


An electronic component that offers a new way to squeeze more data into computers and portable gadgets is set to go into production in just a couple of years. Hewlett-Packard announced today that it has entered an agreement with the Korean electronics manufacturer Hynix Semiconductor to make the components, called "memristors," starting in 2013. Storage devices made of memristors will allow PCs, cellphones, and servers to store more and switch on instantly.
Making memories: This colorized
atomic-force microscopy image shows
17 memristors. The circuit elements,
shown in green, are formed at the
crossroads of metal nanowires.
Credit: StanWilliams, HP Labs

Memristors are nanoscale electronic switches that have a variable resistance, and can retain their resistance even when the power is switched off. This makes them similar to the transistors used to store data in flash memory. But memristors are considerably smaller--as small as three nanometers. In contrast, manufacturers are experimenting with flash memory components that are 20 nanometers in size.

"The goal is to be at least double whatever flash memory is in three years--we know we'll beat flash in speed, power, and endurance, and we want to beat it in density, too," says Stanley Williams, a senior fellow at HP who has been developing memristors in his lab for about five years.

HP makes memristors by laying down parallel metal nanowires onto a substrate, coating them with a layer of titanium dioxide, and placing a second layer of nanowires perpendicular to the first layer. Where the wires cross, a memristor is formed. HP expects the first devices containing memristors to offer about 20 gigabytes of storage per square centimeter, twice the projected capacity of flash at this time. The company has dubbed memristor-based data storage "ReRAM", which stands for Resistive Random Access Memory.

Like other silicon technologies, flash memory is approaching the physical limits of what's possible in miniaturization. Flash memory also wears out after about 100,000 read-write cycles (longer than the lifetime of most gadgets), while lab tests have shown that memristors can withstand up to about a million read-write cycles.

Under the terms of the new agreement, HP will maintain the intellectual property related to memristors. Hynix will make and sell memristor memory to HP and other customers. Williams says the company's goal is to encourage the industry to adopt memristor memory. "The economic benefit to HP will be as the first mover," says Jim McGregor, chief technology strategist at industry analyst firm InStat.

Displacing flash could still take years and billions of dollars, and the industry has other experimental kinds of memory to consider, notes McGregor. Researchers are working on phase-change and ferroelectric materials that can make new forms of memory. McGregor believes that, given the likelihood of speed bumps in manufacturing, it's unlikely a commercial memristor product will be available in 2013, as HP and Hynix predict.

But Williams does not foresee any major manufacturing hurdles. He says HP has been working for the past year on prototype devices with an undisclosed semiconductor manufacturer. Williams adds that memristors can be made with materials and machinery already present in semiconductor factories.

Dan Olds, a consultant with Gabriel Consulting Group in Beaverton, Oregon, is optimistic about the technology. "The sky's the limit if they can deliver on the promise of memristors--the question is at what price, and how fast prices will come down," he says. "Any new technology is a crapshoot, but if it's a matter of engineering and not basic research, then you feel more confident betting on it."

Friday, March 6, 2009

Gizmost wanted


Intelligent champagne bottles, ‘green’ USB sticks made of corn, an understanding alarm clock, and a robot on wheels led the parade of fun, futuristic gadgets at the world’s biggest technology fair, CeBIT, in Germany

As the high-tech sector tries to buck the global economic slump, inventors from Asia, the US and Europe vied to capture imaginations at CeBIT - the world’s biggest annual hi-tech fair – with ideas to ignite the market in the coming months and years.

The expo runs until Sunday.




SMART LIVING

Researchers at the German Research Centre for Artificial Intelligence, which works closely with several industries, was showing off a range of everyday objects rendered “smart”.

Its cutting-edge champagne bottles sound a bell when the bubbly has hit the perfect quaffing temperature, while an intelligent medicine cabinet lets you know when you last took your medication or need to get a prescription filled.

A so-called gentle alarm clock from Germany’s Simple Feature monitors sleep rhythms via a soft wristband fitted with sensors (pictured).

It then chooses a shallow sleep phase within 30 minutes of the desired wake-up time and goes off with a range of alarm tones including bird songs – encouraging what the firm says is a smoother start to a more productive day.



EASY NAVIGATION

A new navigator developed by GPS device manufacturer Garmin can calculate not only the most direct route, or the one with the least traffic, but also the one that would use the least fuel. What’s more, it even adds up the money you will save on your journey!

“The EcoChallenge feature analyses the driver’s heavy or light-food pedal technique and braking as well as the car speed, and shows how well the driver is doing in the fuel-saving stakes,” the company said.




LET ME ENTERTAIN YOU


Innovations in the world of entertainment also drew the crowds.

Taiwan’s Aiptek is offering movies-to-go to with its Pocketcinema portable projector, complete with 2GB of memory to store films.

Dutch firm Adapt Mobile, on the other hand, has a pocket projector that lets you share life-size photos.

Billed as the first Skype video telephone, the Eee by Germany’s Asus is a home phone that allows cheap international video calls in better quality than on a standard computer.

German premium sound specialist firm Blaupunkt unveiled prototypes of what they called the world’s first Internet car radio, promising access to “thousands of stations” via cellular phone networks.

And fashionistas needing a little more bling must look no further than the Asus EEE S121 notebook, wrapped in supple dark leather and studded with Swarovski crystals.

The company also showed off its EEE keyboard PC, which can wirelessly connect to any TV.



GOING GREEN

In keeping with a “green” theme at this year’s event, USB sticks and photo cards by California-based ITP now come in biodegradable plastics made of corn.

And some of the proceeds will go to tree-planting projects.


Meanwhile, people plagued by the question “Did I leave the iron on?” can relax. Swiss firm digitalSTROM.org has developed a chip that can be installed in ordinary light switches. An “everything off” button switches every device hooked up to the system to “standby”, averting fires and cutting energy bills.

The fair is also showcasing a range of new ultra-thin, ultra-efficient netbooks that are easier on the wallet, including the first “zero-watt” laptop from Fujitsu-Siemens that uses no electricity when idle.

And then there was Japanese giant Toshiba, showing off televisions that use half the power of normal sets.



MED-TECH

The CeBIT is spotlighting eHealth this year, featuring products that allow patients to receive better care from home, thanks to the Internet.

Bodytel of Germany has developed a blood sugar monitor for diabetics whose results can be beamed straight to the patient’s file at his doctor’s office via his mobile phone.

Similar devices keep watch on one’s blood pressure and heart rates.



ROLLIN' ROBOT

In the Future Parc hall of CeBIT, all eyes have been on the Rollin’ Justin robot, developed by the German Aerospace Centre.

The robot has a humanoid upper body; but instead of legs, there’s a four-wheel omni-directional base that helps it “roll” around.

Justin is also capable of detecting and squeezing through tight areas such as doors, using smart technology to bring its “legs” together, or by lifting them using a spring mechanism, its inventors said.


Its appendages are robotic arms known as DLR-III, which have sensors that can calculate the weight and impact of any object they come in contact with.

This allows Justin to perform complex, delicate tasks such as preparing tea and “shaking a person’s hand without breaking it”, said one of its developers, Thomas Wimboeck.

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