Why did graphene batteries not replace lithium batteries as batteries for electric vehicles? In the future, graphene batteries are unlikely to replace lithium batteries to power electric vehicles. Although some experimental data of graphene batteries show that its performance is better than lithium batteries, the technology has not yet reached mature technical indicators. Every product on the market has to go through a long process from development to launch, such as safety, stability, practicability, and cost-effectiveness. As long as these functions are available, consumers' needs for products can be met. As we all know, graphene batteries currently only exist in laboratories. Nine-tenths of so-called graphene batteries on the market are counterfeit products, or lithium batteries and lead batteries containing graphene are called graphene batteries. The real graphene battery only exists in the experiment, there is no real product. In order to replace lithium batteries, graphene batteries must be processed and become real products. As the current circulating lithium battery, it has the advantages of good function, low processing materials, and good supporting technology. Therefore, graphene batteries and lithium batteries still have a long way to go. In the future, graphene battery technology is likely to become a part of lithium batteries. As the crystallization of the battery development process, the lithium battery has many advantages and has become the mainstream battery that is recycled in the current market. Although graphene batteries have made new breakthroughs, considering market demand, graphene may not be able to completely replace lithium batteries. For example, although nuclear power plants are said to use cleaner energy, they do not completely replace other types of power plants. The same is true for graphene batteries, which are more likely to be used in lithium batteries in the future. Instead of replacing the lithium battery. At the current level of research, graphene batteries are still in the theoretical research stage. In addition, the graphene battery itself has many shortcomings, such as serious post-processing pollution, large graphene surface area, and large chemical influence. Although in theory graphene can be used as a conductive agent to increase the charge and discharge rate, if there is no proper dispersion power, its function will not only not improve, but also decline. In addition to the complex processing technology, the cost is high. Compared with traditional lithium batteries, it is not suitable for large-scale markets. Although graphene batteries are a new concept in the battery field, this does not mean that new things can replace old things. After induction and comparison of various factors, so far, the induction function of lithium batteries is stronger than that of graphene batteries, so it is unlikely that graphene batteries will replace lithium batteries. Disclaimer: Some pictures and content of articles published on this site are from the Internet. If there is any infringement, please contact to delete.
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