Tuesday, June 30, 2009

Polymer lithium-ion batteries have been identified to

Polymer lithium-ion batteries have been identified to

Polymer lithium-ion batteries have been identified to


Chengdu Organic Chemistry Co., Ltd., Chinese Academy of Sciences of the State to bear the “863″ issue - polymer lithium-ion battery(367759-001, hstnn-ib09) separator projects, through the identification of the Sichuan Provincial Science and Technology Agency.


The project uses polymer grafting reaction route,BTP-52EW battery, using the principle of separation of cyano group Preparation of nano-porous polymer electrolyte membrane technology is the first at home and abroad, prepared by the use of cast polymer membrane electrolysis system, preparation is simple, low production cost, with good market competitiveness and significant economic and social benefits. Polymer membrane electrolysis system with the preparation of polymer lithium-ion battery(hp pavilion dv1000 battery, hp pavilion dv4000 battery) has a good charge-discharge performance.


Light by the State Quality Supervision and Test Center battery tests, polymer batteries to achieve the national standard. In polymer supercapacitors show good prospects for development.


Copper indium-selenium thin film solar cell technology research to make a breakthrough


Recently, optoelectronic thin film devices by Nankai University and Professor Sun Yun Institute TravelMate 240 Series, of Technology Task Force to assume the state “15 863″ major feature “thin-film copper indium selenium solar cells in the test platform and experimental line” made a crucial breakthrough in the sun as a symbol the overall level of the battery indicator - battery photoelectric conversion efficiency of 12.1%.


Copper indium-selenium thin film solar cell (referred to as copper indium selenium cell - gd761, kd476, td347, dell inspiron 1501 battery, dell inspiron 6400 battery) is a substrate of glass or other cheap metal layer deposited on a number of compound semiconductor thin film, thin-film total thickness of about 2-3 microns, the use of solar power generation. Copper indium selenium cell with a low-cost, stable performance, strong anti-radiation properties, photoelectric conversion efficiency is the first in a variety of thin-film solar cells, it is precisely because of its excellent performance by the international community as the next era of cheap solar energy batteries, attracted a large number of institutions and experts to conduct research and development. However, copper indium selenium cell is a multi-compound semiconductor devices, with complex and sensitive multi-storey structure ratio of the elements, BTP-60A1 battery,processes and preparation of its extremely harsh conditions, only the United States, Japan, Germany completed the development of pilot-line, but large-scale production has not yet been achieved.


At the national “Tenth Five-Year 863″ Project of Tianjin Science and Technology, Nankai University, co-funded research group at all levels through the formation mechanism of thin film materials and reaction kinetics, the device structure and interfacial interactions at all levels on key issues such as, made significant progress, some have made breakthroughs in key technologies and applications for two patents. At the same time, the battery makes copper indium selenium photoelectric conversion efficiency in a more stable basis of 8-10% reached 12.1%, 3.5 × 3.6cm integrated battery conversion efficiency of 6.6, the completion of the Ministry of Science and Technology and Tianjin Science and Technology Commission issued the first stage of the study task, in order to follow the development has laid a solid foundation.


Copper indium selenium cell is the most promising next-generation thin film solar cells, BTP-58A1 battery,one may become the future of solar cell commercialization and industrialization of the mainstream products. At present, the group is stepping up efforts to test lines of research and development, and strive to achieve in the next 5 years technical leap, open the “basic research - the development of laboratory techniques - in the test technology development - the realization of industrialization” of the channel .


Matsushita push new e-reader




Matsushita push new e-reader


Trackback: http://www.battery-base.com The Laptop Battery Shop.


February 5, the Japanese electronics giant Matsushita Electric Industrial Co., Ltd. in Tokyo, a staff of new e-reader display - “SBook”.


This reader has a folding 7.2 inches of ultra-low power XGA LCD, Acer Laptop Battery,2 AA batteries to make it for three months. Panasonic will be February 20 of the products to market. Its price will be 37,900 yen (about 355 U.S. dollars).


February 5, the Japanese electronics giant Matsushita Electric Industrial Co., Ltd. in Tokyo, a staff of new e-reader display - “SBook”.


This reader has a folding 7.2 inches of ultra-low power XGA LCD, 2 AA batteries to make it for three months. Panasonic will be February 20 of the products to market, its price will be 37,900 yen (about 355 U.S. dollars). Chengdu courtyard where residents have finally lost the place used batteries. Yesterday was informed that in order to achieve the objectives of the creation of Environmental Protection Model City, Chengdu, the first batch of nearly 100 recently has been a “battery recycling boxes” installed on a residential compound.BTP-43D1, Used batteries will be unified departments recovery, battery factory and then transported to the city for special treatment.


Battery recycling bins into the area, marking the beginning of the full establishment of Chengdu, the risk of waste collection system of classification, after the danger of the existence of disorderly conditions of garbage will be completely resolved.


Learned from relevant departments, TravelMate 220,a total investment of the risk of nearly 1 billion junk storage and processing center is expected to completed in the next year to deal specifically with used batteries, slag, smelting, as well as organic solvents, such as Java. According to the plan, the center occupies an area of a few mu, and mu in the next building on the landfill.

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