Method for preparing metal organic frame gas separating film by utilizing pinning effect of metal organic nano rod array on macro-pore substrate
A technology of nanorod arrays and metal-organic frames, which is applied in separation methods, semi-permeable membrane separations, and dispersed particle separations, can solve problems such as poor uniformity, immature development, and high production costs, and expand the scope of application Reproducible, enhanced adhesion effect
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Embodiment 1
[0037] 1) Under magnetic stirring, add 1.4 mM ethanolamine aqueous solution to the same volume of 4 mM copper nitrate aqueous solution. After 1 minute, slow down the stirring speed, and seal the reaction vessel. After 12 to 36 hours, a copper hydroxide nanowire solution is obtained. , filter 30 ml of the nanowire solution directly to form a 900 nm thick nanowire layer on the porous alumina membrane. The diameter of the porous alumina membrane is 2.5 cm, the pore diameter is 200 nm, and the porosity is 25-50%;
[0038] 2) Add the nanowire layer to 30ml of 1mM trimesic acid aqueous solution (pH=4), and react at 120°C for 24 hours to obtain a metal aluminum organic framework nanorod array, see figure 2 , image 3 ;
[0039] 3) Add the nanorod array to a mixed solution containing 40ml of copper nitrate, zinc nitrate or cadmium nitrate with a concentration of 30mM, 20mM trimesic acid, and ethanol water as the solvent, and react at 120°C for 6 to 24 hours to obtain a thickness of 25...
Embodiment 2
[0041] 1) Under magnetic stirring, add 1.4 mM ethanolamine aqueous solution to the same volume of 4 mM copper nitrate aqueous solution. After 1 minute, slow down the stirring speed, and seal the reaction vessel. After 12 to 36 hours, a copper hydroxide nanowire solution is obtained. , filter 30 ml of the nanowire solution directly to form a 900 nm thick nanowire layer on the porous alumina membrane. The diameter of the porous alumina membrane is 2.5 cm, the pore diameter is 200 nm, and the porosity is 25-50%;
[0042] 2) Add the nanowire layer to 30ml of 1mM trimesic acid aqueous solution (pH=4), and react at 120°C for 24 hours to obtain a metal aluminum organic framework nanorod array;
[0043] 3) Add the nanorod array to a mixed solution containing 40ml of 30mM copper nitrate, 20mM trimesic acid, and ethanol water as the solvent, and react at 120°C for 12 hours to obtain a 35μm thick metal-organic framework film, ethanol The volume ratio of ethanol to water in water is 1:1, ...
Embodiment 3
[0045] 1) Under magnetic stirring, add 1.4 mM ethanolamine aqueous solution to the same volume of 4 mM copper nitrate aqueous solution. After 1 minute, slow down the stirring speed, and seal the reaction vessel. After 12 to 36 hours, a copper hydroxide nanowire solution is obtained. , filter 30 ml of the nanowire solution directly to form a 900 nm thick nanowire layer on the porous alumina membrane. The diameter of the porous alumina membrane is 2.5 cm, the pore diameter is 200 nm, and the porosity is 25-50%;
[0046] 2) Add the nanowire layer to 30ml of 1mM trimesic acid aqueous solution (pH=4), and react at 120°C for 24 hours to obtain a metal aluminum organic framework nanorod array;
[0047] 3) Add the nanorod array to a mixed solution containing 40ml of 30mM copper nitrate, 20mM trimesic acid, and ethanol water as the solvent, and react at 120°C for 24 hours to obtain a 50μm thick metal-organic framework film, ethanol The volume ratio of ethanol to water in water is 1:1, ...
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