Showing posts with label batteries. Show all posts
Showing posts with label batteries. Show all posts

Wednesday, November 19, 2014

Ternary cathode materials: a market full of promise in China





Cathode materials, a key component of the lithium-ion (Li-ion) batteries that power our digital devices and, increasingly, our hybrid and electric cars, are already produced in large quantities in China. Cathode materials made in China can be found in devices made by Samsung, LG, Sony, and many other brands. However, according to China market intelligence firm CCM, the market is about to undergo major changes in the coming years, as newly-developed ternary cathode materials increasingly replace their mainstream rivals.

Current state of the cathode materials market in China

In China, both mainstream cathode materials such as lithium cobaltate (LiCoO2), lithium manganate (LiMn2O4) and lithium iron phosphate (LiFePO4), and the newly-developing ternary cathode material, lithium nickel manganese cobaltate (Li(Ni,Co,Mn)O2), have achieved marketization.

LiCoO2: Currently, the market is dominated by LiCoO2, which accounted for more than 50% of the 48,000 tonnes of Li-ion battery cathode materials produced in China in 2013. LiCoO2 is the preferred cathode material for small-scale, high-energy-density Li-ion batteries used in high-end electronic products both in China and worldwide. In recent years, Chinese-manufactured LiCoO2 has been largely exported to South Korea-based Samsung Group, South Korea-based LG Group (LG), Japan-based Sanyo Electric Co., Ltd. and Japan-based Sony Corporation, and a stable supply chain has taken shape.

However, LiCoO2 has two big disadvantages – high production costs due to scarce Co resources, and a high level of toxicity, which can cause harmful environmental pollution. For these reasons, downstream enterprises are demanding suitable substitutes for LiCoO2, and it appears that LiCoO2 is already in decline.

LiMn2O4: LiMn2O4 is a more eco-friendly cathode material with key advantages, such as low price, high electric potential and high safety levels. At present, LiMn2O4 is mainly applied in medium- and low-end electronic products. Overseas, especially in Japan and South Korea, LiMn2O4 is mainly used in power Li-ion batteries. The first Li-ion battery based on LiMn2O4 was launched in the early 1990s by Sony Corporation.

Nevertheless, LiMn2O4-based batteries tend to have poor circulation performance and their electrochemical performance degrades quickly. Manganese dissolution is also a problem when batteries are operating at temperatures of 55℃ or above, making them unsuitable for many applications.

LiFePO4: As China’s alternative energy vehicle industry has developed, the domestic power Li-ion battery industry has increasingly been focusing its R&D efforts on developing LiFePO4 as a cathode material. In this, China is clearly following the US’ lead, where Valence Technology Inc. and A123 Systems, LLC have already adopted LiFePO4 in power Li-ion batteries, but China is yet to produce LiMn2O4 with fine circulation and storage performance at high temperature suitable for application in a power Li-ion battery.

Moreover, although LiFePO4 is outstanding in its thermal stability, circulation performance and security, it still has shortcomings of low specific volumetric capacity and weak electrical conductivity.

Where the market is heading: Li(Ni,Co,Mn)O2 a promising solution

Clearly, each of the mainstream cathode materials has its strengths and weaknesses. In recent years, both domestic and overseas researchers for Li-ion battery cathode materials have been making efforts to improve the performances of these three materials by optimizing various technologies. Also, they are searching for new cathode materials combining high security and high energy density with low costs.

Ternary cathode materials, such as Li(Ni,Co,Mn)O2, have been widely recognized as one of the most promising and potentially valuable cathode materials. According to CCM’s research, in order to conform to the general industrial trend of developing ternary cathode materials, China has done a great deal of research in synthetic technology, lattice doping, surface coating and electrolyte modification with the aim of steadily advancing towards the industrialization of ternary cathode materials.

Industry insiders have informed CCM that although the market shares of ternary cathode materials are currently limited, the low production cost and high energy density of these new materials are so outstanding compared to other commercial cathode materials that their market shares are certain to increase.

In particular, in the field of power Li-ion batteries, the cathode materials targeted at LiMn2O4 and LiFePO4 will transit into hybrid materials of LiMn2O4/Li(Ni,Co,Mn)O2 and LiFePO4/Li(Ni,Co,Mn)O2 in the coming years. Finally, when ternary cathode material preparation has matured and the relevant patent applications have been processed, ternary cathode materials are expected to become the mainstream cathode materials for power Li-ion batteries.

Meanwhile, China’s National Standardization Technical Committee of Nonferrous Metals has begun the process of producing a set of related industry standards for Li(Ni,Co,Mn)O2. The Standards for Li(Ni,Co,Mn)O2 and the Method for Chemical Analysis of Li(Ni,Co,Mn)O2 are expected to be issued in the near future. This will also help to further the development of China’s Li(Ni,Co,Mn)O2.

-          This article was provided by CCM, a leading provider of data and business intelligence on China’s chemicals market. CCM has launched China Li-ion Battery E-News, a new e-journal dedicated to analyzing all the latest news and trends in China’s Li-ion battery industry. For more information on CCM and China Li-ion Battery E-News, please visit www.cnchemicals.com or contact econtact@cnchemicals.com

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Friday, November 14, 2014

Alternative energy vehicle market set to propel growth of China’s Li-ion battery separator industry

The alternative energy vehicle market in China is accelerating rapidly, with production of alternative energy automobiles set to increase 55% in 2015, according to China market experts CCM. This boom is fuelling the growth of several upstream industries, and none more so than the power lithium-ion (Li-ion) battery industry, which is enjoying rapid growth in China. In particular, CCM believes that the PVDF-coated Li-ion battery separator is a very promising product.

The Twenty-First Century has been kind to the Li-ion battery industry. First, the increasing ubiquity of consumer electronic devices such as smartphones sent revenue soaring – between 2003 and 2013, global Li-ion battery industry revenues increased from $5.31 billion to $27.55 billion. Now, the industry is enjoying a second windfall. Increasing demand from the energy storage and, especially, the alternative energy vehicle industries is predicted to raise global market demand for Li-ion batteries from 67.07 million kWh in 2014 to 131.20 million kWh in 2016, a 39.85% compound annual growth rate.

Growth in China’s Li-ion battery market has been even more rapid – the average annual growth rate in China has been 10-13% higher than the global average – and strong government support for China’s emerging alternative energy vehicle industry should benefit domestic Li-ion battery manufacturers even further. This support was cemented in July 2014 with the publication of the Guidance to Accelerate the Promotion and Application of Alternative Energy Automobiles, which contains development projects for China’s battery electric vehicle (BEV), plug-in hybrid electrical vehicle (PHEV), extended range electric vehicle (EREV) and fuel cell vehicle (FCV) industries.

As the power Li-ion batteries used in alternative energy vehicles contain a large number of separators, the increasing demand for hybrid and electric cars is good news for Chinese Li-ion battery separator manufacturers. Production of separators in China did not begin until as late as 2008, as the advanced technology required was out of reach of Chinese companies until that point. Nevertheless, the industry has made great strides in recent years and Chinese manufacturers are beginning to become suppliers of international clients. Shenzhen Senior Technology Material Co., Ltd. (Senior), for example, has supplied the US-based A123 System LLC. and the South Korea-based LG Electronics Inc. with its products.

However, the high performance needed to power an alternative energy vehicle presents a challenge to China’s separator manufacturers. According to industry experts, a power Li-ion battery’s internal temperature can rise to a very high level when in use, and this can easily cause the cathode separator to melt, which may result in a short circuit.

For this reason, CCM believes that PVDF-coated separators may become increasingly popular in China. Although more expensive than conventional separators, PVDF-coated separators offer several key advantages, significantly improving the safety performance, reducing leaking and the expansion rate, and extending the life cycle of the battery, and improving the consistency of battery cells.

As the table below shows, a number of Chinese companies are already manufacturing PVDF-coated separators. It is very likely that we will also see more companies join this market in the near future.

Details of some of China’s PVDF-coated separator manufacturers, 2014
Enterprise
New product
Remark
FSPG Hi-Tech Co., Ltd.
PVDF separators applied in solar battery
A leader in new polymer materials such as Li-ion battery separators, polarizing film and capacitor film
Cangzhou Mingzhu Plastic Co., Ltd.
New Li-ion battery separators such as composite separators, ceramic coated separators and PVDF coated separators
It has three production lines for Li-ion battery separators with a total production capacity of 20 million m2/a. The output in 2013 was 13 million m2
Foshan Yingbolai Technology Co., Ltd.
Composite separators, ceramic coated separators and PVDF coated separators
/

Note: PVDF stands for polyvinylidene fluoride
Source: CCM

-          This article was provided by CCM, a leading provider of data and business intelligence on China’s chemicals market. CCM has launched China Li-ion Battery E-News, a new e-journal dedicated to analyzing all the latest news and trends in China’s Li-ion battery industry. For more information on CCM and China Li-ion Battery E-News, please visit www.cnchemicals.com or contact econtact@cnchemicals.com

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