Albany, NewYork (PRWEB) December 16, 2013
Traditionally, rechargeable batteries have been used as energy dense products and the other devices based on capacitors have been used as power dense products. There are more-power-dense versions of the favourite rechargeable batteries - lithium-ion with 70% or so of the rechargeable battery market in 2023. Unfortunately, power dense rechargeable batteries surrender a lot of energy density. It is therefore helpful that more and more energy dense supercapacitors and variants are becoming available, some even matching lead acid batteries and yet retaining excellent power density.
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This convergence of properties has led to the widespread combination of the two in parallel, particularly in power applications. Battery/supercapacitor combinations approach the performance of an ideal battery - something that can never be achieved with a battery alone because its chemical reactions cause movement, swelling and eventually irreversability. In some cases, things have gone further. For example, hybrid buses using supercapacitors now rarely use them across the traction battery - the supercapacitor replaces the battery, the only battery remaining in the vehicle being a small lead-acid starter battery.
Incidence of manufacturers of various types of supercapacitor and variant by operating principle
Many more supercapacitor variants are now available. There is now almost a continuum of devices between conventional electrolytic capacitors and rechargeable batteries as we explain in the report. The analysis of 80 manufacturers and putative manufacturers reveals, for example, how battery manufacturers and conventional capacitor manufacturers are entering the business of devices intermediate between the two. However, rather surprisingly, most of the intermediate devices are developed and manufactured by companies not in either conventional capacitors or batteries. Although we use the term intermediate devices, some have some properties superior to both conventional capacitors and rechargeable batteries.
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1. EXECUTIVE SUMMARY AND CONCLUSIONS
1.1. Supercapacitors and batteries converge
1.1.1. Supercapacitors and Li-ion Batteries are one business
1.2. Success by application and territory
1.3. Technology road map 2013-2024
1.4. The most important future technical advances commercially
1.5. Most are chasing area improvement
1.6. Even lower temperature
1.7. Price and functional issues
1.8. Supercapacitors increase range of electric vehicles
1.9. Supercapacitors in vehicles
1.9.1. Conventional vehicles
1.9.2. Electric vehicles
1.10. Incidence of the different technologies
1.10.1. Incidence of manufacturers by operating principle
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List of Figures
1.1. Some of the options and some of the suppliers in the spectrum between conventional capacitors and rechargeable batteries with primary markets shown in yellow
1.2. Examination of achievement and strategy in the most important applicational sectors. Number of manufacturers of supercapacitors and their variants that have that have supplied given sectors vs number that target them for future ex
1.3. Probable timeline for market adoption by sector and technical achievements driving the growth of the market for supercapacitors and their derivatives 2014-2025 with market value projections for supercapacitors, cost and performanc
1.4. Some of the main ways in which greater supercapacitor energy density is being sought by the route of increasing useful carbon area per unit volume or weight
1.5. The main functions that supercapacitors will perform over the coming decade
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