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Superlattice Power Inc. (SLAT.OB) Investigating Battery Applications for Space Flight

QualityStocks (July 9th, 2008) Writes:

Superlattice Power Incorporated, a groundbreaking company in the field of lithium-powered batteries, is investigating plans to leave the ground and develop batteries for space flight applications. The experimental investigation into space flight applications involves a unique process for large-scale production of two cathode materials for their ion lithium batteries.

The new cathode materials will be less expensive than existing materials commonly used in the industry, and composed of environmentally-friendly manganese. The Stoichiometric general formula for these two cathode materials are Li(LixNiyMnz)O2 and Li(LixNiaMnbCoc)O2. The desired results for Superlattice Power will be increasing the current gravimetric capacity of 240 mAh/g to 280 mAg/g. This result will be targeted and potentially achieved at the company’s research facility, where development has already begun.

Now that the relatively new venture is in order, it still awaiting a team leader, but Superlattice Power will secure a

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Superlattice Power Inc. (SLAT.OB) is Focused on Bringing Superlattice Structure Batteries into the Mainstream

QualityStocks (June 30th, 2008) Writes:

Superlattice Power Incorporated has been acclaimed for its breakthroughs in battery technologies. Several researchers and other companies have attempted to harness the high capacity and energy density from superlattice-structured batteries, but have always come up short and never produced their products commercially or on a large scale. However, Superlattice Power Inc. has found success in the development and marketing of the next generation lithium-powered batteries worldwide.

The superlattice structure, which is the key to the company’s success, is a hexagonal structure, allowing the batteries to accommodate more lithium and therefore more energy. Another crucial component to the success of these new batteries is the materials being used. The target material is a mixed oxide with a general formulation of Li1+xMnaCobNicTidO2 to ensure homogeneous mixing of all starting materials which are pre-calcined at high temperatures ranging from 700°C to

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