Design of High-Performance Electrodes for Tesla Batteries
DOI:
https://doi.org/10.54097/hset.v37i.6037Keywords:
Electrode materials, ternary lithium battery, lithium iron phosphate battery.Abstract
With the aggravation of environmental pollution, the prevalence of the greenhouse effect and the increasing shortage of oil resources on earth, new energy vehicles emerged as the Times requires. As a giant of new energy vehicles, Tesla's electric vehicle stands out among its peers with its super endurance, but it still has many shortcomings that need improvement and enhancement. In today's society, battery safety, capacity, charging speed, weight, cost and many other factors have been considered in the comprehensive consideration of a good battery. In particular, some very necessary measures and issues of concern to the media of various countries. Such as the improvement of safety performance requires us to improve the performance of batteries continuously. Undoubtedly, the most important component of a battery is its electrode. So, designing and developing high-performance electrode material is one of the most important steps.
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Tesla electric vehicle products related information and battery information graph: https://www.tesla.com/.
An understanding of the structure and composition of batteries: https://wapbaike.baidu.com/item/%E7%94%B5%E6%B1%A0?timestamp=1660438523943.
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Deep research, development and application of electrode materials: Guanghui Wu etc. Fundamentals of Applied Electrochemistry, Xiamen University Press, 2006.
π-conjugated REDOX polymers structure graph for batteries.
Synthesis mechanism of polymers structure graph.
The graph of performance of composite electrodes.
Composite electrode properties of stability and durability.
Li, N.-W., Yin, Y.-X., Xin, S., Li, J.-Y., Guo, Y.-G., Small Methods 1 (2017) 1700094.
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