Showing posts with label India. Show all posts
Showing posts with label India. Show all posts

Tuesday, September 23, 2008

Suniva's Light-Trapping Pushes Effiiciency to Over 20%

Suniva, an Atlanta-based startup, announced that is has produced high efficiency monocrystalline solar cells with a conversion efficiency of 20%, representing a significant improvement over the efficiency of 18.5% of its current line of ARTisun cells and close to the industry's leading efficiencies (23.4% by SunPower).

According to its website, Suniva has a three-prong approach to making efficient cells:

  • An improved set of screen-printed contacts. While screen-printing of solar cell gridlines is now a standard practice in the industry, Suniva has adjusted processing parameters and paste to improve contact performance.
  • An improved high sheet-resistance emitter to increase response from the blue end of the solar spectrum (where photons are more energetic) and raise the current level of the device.
  • An improved dielectric passivation layer to minimize recombination of electrons with holes and reflect light for a second pass through the active layer. By improving this passivation, fewer photogenerated carriers are lost at the surfaces and the power output of the cell is increased.

Translating the above bullet points into English, Technology Review ran an excellent piece discussing in greater detail how Suniva achieves higher efficiencies by "light-trapping" through the use of additional texturing on the surface of the silicon layer coupled with the addition of a reflective layer at the back of the silicon surface. This results in the ability to halve the thickness of the solar cell while achieving the same level of light absorption, which in turn allows Suniva to make do with not only a reduced amount of expensive silicon material but also with a lower quality, less pure and cheaper grade of silicon.

In a conventional solar cell, which can have a silicon layer 200 micrometers thick, impurities within the material can easily trap electrons before they reach the surface and escape to generate a current. In a layer of silicon just 100 micrometers thick, however, the electrons have a shorter distance to travel, so they're less likely to encounter an impurity before they escape.

Suniva’s website currently has stated goals of achieving 20% conversion efficiencies by, depending on which specific webpage you are on, 2010 or 2011. It seems that they have already handily outdone themselves. On the other hand, perhaps these are dates by which they hope to have 20% efficient cells fully commercialized, in which case some challenges lie ahead, according to Technology Review:

The results [of Suniva’s cells achieving 20% conversion efficiency] have been confirmed by the National Renewable Energy Laboratory, in Golden, CO. But for those tests, Suniva used cells with 200-micrometer-thick silicon wafers, and reaching 8 cents a kilowatt [i.e. grid-parity] will require 100-micrometer wafers. That this is technically possible has been established. The challenge lies in acquiring large amounts of such silicon, since wafers that thin aren't commercially available, [Founder and CTO Dr. Ajeet] Rohatgi says. What's more, factories will need to be retooled to handle 100-micrometer cells, which machines designed to handle thicker wafers could break.

Suniva's approach thus seems to be dispelling the myth that high conversions efficiencies and lower production costs are necessary trade-offs. (As an aside, the silicon-based solar guys aren’t the only kids in the block trying to get wafer thickness down. Utah scientists have devised cutting edge methods to slice germanium-based wafers resulting in less waste, and thus more usable wafers and ultimately lower costs per watt.)

Suniva was spun out of Georgia Institute of Technology's Center for Excellence in Photovoltaics, a research group founded in 1992 by the university. According to Venture Beat, the company received US$50 million in a second round of financing earlier this year, and expects to achieve the holy grail of producing cells at US$1 per watt (generally agreed as the cost level corresponding to grid parity) in two to three years time. Suniva ranked #9 in GreentechMedia's list of Top Ten Startups this year.

Suniva has been wheeling and dealing quite a bit for a two-year old (and not heavily capitilized) startup. In June, it announced it would begin production on a 32 MW pilot plant (and expects to add another 100 MW over the next two years) and signed up to a US$300 million wafer supply deal with REC. Just last month, it sealed a US$500 million deal to supply Solon AG, Europe's largest solar photovoltaic module manufacturer, with high-efficiency monocrystalline solar cells through 2012. In the same month, it tappws its India connections through its founder and CTO, Dr. Ajeet Rohatgi (pictured), Suniva entered into a long-term supply contract to supply Titan Energy Systems, one of India's largest and longest-standing manufacturers of solar modules, more than US$480 million worth of high-efficiency monocrystalline silicon solar cells through 2013 to be used in Titan's highest efficiency product lines.

We'll try to keep tabs on the progress of Suniva's ongoing RD&D.

Wednesday, July 9, 2008

Solar Prius; GT Solar to List; Country Briefs

The Toyota Prius is going solar. Sort of. It is reported that electricity from Kyocera solar panels attached to a models of the famed hybrid car to be released next year would make up a portion of the 2 to 5 kilowatts needed to run parts such as air conditioning. It won't power the cars for 5 to 8 miles or reduce gas mileage by 17 to 29% as this white paper by Solar Electric Vehicles, a seller of solar electrical systems for cars, would lead us to believe (hat tip to Earth2Tech). Its really more a “symbolic gesture” than anything else.

But this prototype car from Taiwan (again, h/t to Earth2Tech) is totally solar-powered and capable of running at 70 kmh.

Speaking of autos and solar, General Motors will be the beneficiary of the world's largest rooftop solar installation (12 MW) on its assembly plant in Zaragoza, Spain, courtesy of thin film flexible solar laminates from United Solar Olvonic, a subsidiary of Energy Conversion Devices.

GT Solar to List

Solar manufacturing equipment company GT Solar has set its IPO terms. It will sell 30.3 million shares at a price range of $15.50 to $17.50 and trade on Nasdaq under the ticker “SOLR.” Interestingly, none of the IPO proceeds are going to be used as working capital; they are all being paid out as distributions to existing shareholders. Infer from this fact what you will about GT Solar’s future ambitions, or better yet, check out their IPO prospectus.

Around the World

Japan is contemplating reviving subsidies for solar installation which were discontinued in 2005. Solar is one of eight pillar strategies in India's climate change action plan. It is short on details but does set some numerical targets, such as the establishment of 1,000 MW of concentrating solar power (CSP) by 2017 and the production of 1,000 MW per year of photovoltaics by 2017. Spain, on the other hand, is contemplating reducing their feed-in tariffs for solar after Germany reduced theirs last month, but by not as much as the solar industry feared.

I am getting more and more reports of solar activities in Korea. With its industrial experience in semiconductors and electronics, I’m betting big things for the Korean solar industry. the solar coaster first mentioned Korea last month. Today, The Korea Times reports that familiar names Samsung, LG, and Hyundai Heavy Industries are all getting active in the solar game, building solar production lines. KCC, South Korea's largest manufacturer of construction materials, will reportedly invest KRW 3.9 trillion (USD 3.8bn) to expand polysilicon production capacity through 2020.

Thursday, May 22, 2008

SunPower and IBM Claim Higher Efficiencies; DuPont Enters Thin Film Market

SunPower Reaches 23.4% Cell Efficiency
SunPower Corporation announced that it has produced a full-scale, five-inch prototype solar cell with an efficiency of 23.4%. This is a world-record for a large area solar cell according to the company.

IBM Also Claims Major Boost in Solar Cell Efficiency...
IBM has managed to squeeze 230W of power on to a centimeter square of solar panel using concentrator photovoltaics. The energy was then converted to 70W of usable electric power, the best power efficiency yet achieved, the company claims.

...and Replants Chip-Cooling Tech in Solar Farms
IBM has developed technology that will let solar cells withstand the heat of more than a 1,000 suns...representatives from IBM Research's photovoltaics research will present a method for cooling concentrating photovoltaics, a solar design where light is magnified onto high-performance solar cells.

DuPoint to Enter Thin Film Amorphous Silicon Market
DuPont (NYSE: DD) announced that it will soon begin construction on a research center in Hong Kong and a manufacturing facility in Shenzhen to support the rapidly growing photovoltaic (PV) solar energy industry

India May Set Up Solar Energy Commission
The Centre proposes to set up a Solar Energy Commission, with equal participation from the private sector. It is to tap the solar energy potential for meeting the future energy needs of the country.The initial investment for the project will be around $ 10 billion.

Barriers to Solar Energy's Blockbuster Promise

Green Tech Blog reflects on what is holding back the solar explosion in California.

Fun Solar Tech of the Month: Solar Lilypads!

Saturday, April 19, 2008

Solar beats in India

I've hinted before that India is an emerging solar hub. In the estimation of leading venture capitalist, Vinod Khosla, the concentration of engineering talent emerging from India is poised to help India grow into a serious clean tech player. I've noticed quite a bit of solar business action this month on the Indian front, so I thought it would be worth compiling some these stories here:

Orb Energy, a provider of solar energy systems in India, a received a prestigious award for US$1 million from the U.S. State Department in support of the goals of the Asia-Pacific Partnership on Clean Development and Climate.

Moser Baer India Limited, a global technology company, recently announced that its subsidiary, Moser Baer Photo Voltaic Limited has signed an agreement with China-based LDK Solar for sale and delivery of high quality multicrystalline silicon wafers to MBPV over a ten-year period commencing in mid-2008 through 2017.

Clear Skies Solar, Inc. (OTCBB: CSKH.OB) announced a $20 million agreement, subject to financing, with Power Cube, a company located in Utter Pradesh, India to develop and construct the first of several solar energy projects in India.

Spire Corporation (Nasdaq: SPIR), a global solar company providing turnkey solar factories and capital equipment to manufacture photovoltaic modules worldwide, will provide Alpex Exports Pvt. Ltd. a photovoltaic module assembly line for that company's operations in New Delhi, India.

Monday, November 26, 2007

India Starts to Shine

China has received much attention for its emergence as a leading player in the solar industry, but its important to start paying attention to India, and specifically, the high-tech cluster of Hyderabad. The world's most famous venture capital fund, Kleiner Perkins, is targeting India for its next green tech opportunities (including solar). And 50% of the commercial space available in the new "Fab City" in Hyderabad has been taken up by solar companies (at the expense of semiconductor companies, the article explains).

Indeed, the authors of Clean Tech Revolution, a book I've highlighted previously, list Hyderabad as one of the ten emerging clean tech hubs of the world, noting that it is home to the likes of solar-power lantern maker, NEST, and seller of solar hot-water systems known as solar geysers, Photon Energy Systems.

Finally, it should be mentioned that India is also a destination for several notable rural electrification projects, as this one by the German energy company, Conergy, the Solar Electrific Light Fund (SELF), and the UNEP India Solar Loan Programme, demonstrating the usel of microfinance to achieve sustainable development.
Nov 30, 2007 follow up:
A German company thinks India has the chance to become one of the top four generators of solar energy after Germany, Japan and China.