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Heat possessed by materials such as heat absorption wavelength bands of amino acids, peptides, proteins, and organic compounds, 2.5 μm to 20 μm area, heat absorption wavelength bands of inorganic metals and semiconductors, and 0.1 μm to 6.5 μm areas Irradiates the wavelength in accordance with the absorption wavelength band with high density, promotes the generation, synthesis, reaction, and decomposition of amino acids, peptides, proteins and organic compounds, and generates inorganic nanoparticles, thin films, and metal crystals. Promote technology development.
Heat possessed by materials such as heat absorption wavelength bands of amino acids, peptides, proteins, and organic compounds, 2.5 μm to 20 μm area, heat absorption wavelength bands of inorganic metals and semiconductors, and 0.1 μm to 6.5 μm areas Irradiates the wavelength in accordance with the absorption wavelength band with high density, promotes the generation, synthesis, reaction, and decomposition of amino acids, peptides, proteins and organic compounds, and generates inorganic nanoparticles, thin films, and metal crystals. Promote technology development.
The wavelength of the microwave is converted using a magnetic material, aluminum oxide, etc., and the region of the conversion wavelength is radiated by matching the heat absorption wavelength band of the composition, organic matter and material molecules, and the vibration energy of the molecules It is a method of production, synthesis, crystallization, reaction, and decomposition utilized. When an absorption wavelength that matches the heat absorption wavelength band of a substance is irradiated at a high density, the molecules of the substance vibrate and are transmitted from vibration energy to heat energy in the substance. Thermal energy radiated from the heat absorption wavelength is absorbed by water, nitrogen gas, and argon gas, and only the wavelength is radiated and absorbed by the substance, which makes it possible to control the temperature and generate, synthesize, and react peptides, proteins, and organic matter Decomposition was possible, and inorganic nanoparticles, thin films and metal crystals were produced. The heating of food processing also confirmed the increase in amino acids only by irradiating the wavelength region absorbed by amino acids with high density.
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