Method for preparing organic inorganic thin layer alternative super crystal lattice composite material
A technology of composite materials and inorganic thin layers, applied in the field of composite materials and functional materials, to achieve the effect of increasing size, simple and feasible implementation of equipment, and optimizing optical and magnetic properties
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Embodiment 1
[0027] This example is a sodium lauryl sulfate micellar film / zinc oxide quantum dot layered superlattice composite material and its preparation method.
[0028] Preparation process: use sodium lauryl sulfate as surfactant to prepare microemulsion, use n-octanol as co-surfactant to promote sodium lauryl sulfate to form stable lamellar film micelles, use ammonia water to adjust microemulsion The pH value is in the range of 7.8±0.5, and zinc acetate is used as the zinc source of zinc oxide, an inorganic functional nanomaterial. The mass content percentage of each component is: sodium lauryl sulfate: n-octanol: ammonia water: zinc acetate=40%: 25%: 25%: 10%, the sum is 100%. First prepare sodium lauryl sulfate microemulsion and keep the solution stable at 40°C for 1 hour, then add zinc acetate to the solution, stir to prepare suspension, the stirring method can be one of ultrasonic method or high shear emulsification method . The suspension was then warmed to 60 °C for 3 h. The...
Embodiment 2
[0032] This example is the preparation method of sodium lauryl sulfate micellar film / cuprous oxide nanoparticle layered superlattice material.
[0033] Preparation process: use sodium lauryl sulfate as surfactant to prepare microemulsion, use n-octanol as co-surfactant to promote sodium lauryl sulfate to form stable lamellar film micelles, use ammonia water to adjust microemulsion The pH value is within the range of 7.8±0.5, and copper sulfate pentahydrate is used as the copper source for preparing the inorganic functional nano-material cuprous oxide. The mass content percentage of each component is: sodium lauryl sulfate: n-octanol: ammonia water: copper sulfate pentahydrate=35%: 20%: 25%: 20%, the sum is 100%. First prepare sodium lauryl sulfate microemulsion and keep the solution stable at 40°C for 1 hour, then add copper sulfate pentahydrate powder to the solution, stir to prepare suspension, the stirring method can be ultrasonic method or high shear emulsification method ...
Embodiment 3
[0035] This example is the preparation method of sodium lauryl sulfate micellar film / ferric oxide nanoparticle layered superlattice material.
[0036] Preparation process: use sodium lauryl sulfate as surfactant to prepare microemulsion, use n-octanol as co-surfactant to promote sodium lauryl sulfate to form stable lamellar film micelles, use ammonia water to adjust microemulsion The pH value is within the range of 7.8±0.5, and ferrous sulfate is used as an iron source for preparing the inorganic functional nanometer material ferric oxide. The mass content percentage of each component is: sodium lauryl sulfate: n-octanol: ammonia water: ferrous sulfate=40%: 25%: 25%: 10%, the sum is 100%. First prepare sodium lauryl sulfate microemulsion and keep the solution stable at 40°C for 1h, then add ferrous sulfate to the solution, stir to prepare suspension, the stirring method can be one of ultrasonic method or high shear emulsification method kind. The suspension was then warmed t...
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