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What factors have nothing to do with optical quantum efficiency?
The internal quantum efficiency is related to its own material, and the external quantum efficiency should also be related to its own material. According to the calculation formula, the external quantum efficiency is determined by its refractive index, and there are many irrelevant factors, so long as the above are excluded.

By constructing a catalyst with excellent selective gas adsorption performance and changing the adsorption, desorption and activation properties of reactants and products on the catalyst surface, the adsorption capacity of CO2 can be improved, and the product CH4 can be desorbed in time, which significantly improves the reaction efficiency.

The problem of low utilization rate of solar energy is solved by using solar energy in frequency division and coupling with light and heat. The external magnetic field inhibits the recombination of photogenerated electrons and holes, and improves the utilization efficiency of photon and the conversion rate of CO2. Through the magnetic induction heating effect of alternating magnetic field on the monolithic catalyst, the fixed point, positioning and efficient heating of the catalyst are realized, and the photocatalytic reaction performance is improved.

Optical quantum chip

Compared with traditional silicon-based chips, optical quantum chips have greatly improved both transmission efficiency and power consumption. At present, silicon-based chips are used in the global market, which were developed by American scientists around the 1960s. Thanks to the stability of technology, a complete industrial chain has also been formed around the world.

Domestic enterprises can take two steps. One is to increase investment in the research and development of new semiconductor materials, because this is the only factor that we can fully realize the independent localization of chips. The continuous breakthrough of core technologies such as graphene chips and optical quantum chips is enough to prove that we have such strength.