Creation of hydrothermal supported liquid membrane synthesis method for nano material
A technology for supporting liquid membranes and synthesis methods, applied in nanotechnology, chemical instruments and methods, tungsten compounds, etc., can solve the problems of product dispersibility and uniformity of morphology and size that are not as good as some preparation methods, insufficient power, and increased difficulty. , to achieve the effect of easy control of product morphology and structure, adjustable reaction temperature, and wide application range
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Embodiment 1
[0035] Example 1: Construction of a method for synthesizing a hydrothermally supported liquid film.
[0036] Figure 1a It is the various components of the hydrothermal support liquid film synthesis method: 100mL stainless steel hydrothermal kettle, 100mL polytetrafluoroethylene liner, 20mL polytetrafluoroethylene open container and polytetrafluoroethylene hollow cover with four supporting legs.
[0037] The construction process of the hydrothermally supported liquid film synthesis method is as follows:
[0038] (1) The assembly process of the supporting liquid film fixture (such as Figure 1b ): First inject the prepared reaction solution into a 20mL cylindrical open container of polytetrafluoroethylene, then cover the prepared support liquid film on the open container, press the hollow polytetrafluoroethylene cap on it, and tighten the thread, Fix the supporting liquid film firmly at the opening of the container, and then use scissors to cut off the useless part of the supp...
Embodiment 2
[0041] Implementation example 2: Preparation of Cs by hydrothermal support liquid film synthesis method 3 PW 12 o 40 Nanoparticle self-assembled spheres.
[0042] (1) Use an electronic balance to weigh a certain amount of t-BAMBP in a 250mL beaker, add 100mL of a fraction of sulfonated kerosene at 200-220°C with a graduated cylinder, so that the concentration of t-BAMBP is 0.16mol / L, and stir magnetically for 1h. A membrane-forming solution is prepared, and a polytetrafluoromembrane microporous filter membrane with a diameter of 50 mm and a pore diameter of 0.1 μm is soaked in the membrane solution for 12 hours to form a supporting liquid membrane.
[0043] (2) Configure 0.025mol / L of H 3 PW 12 o 40 solution, take 20mL and place it in a 100mL polytetrafluoroethylene liner; configure 0.08mol / L of CsNO 3 Solution, take 20mL in a 20mL polytetrafluoroethylene open container.
[0044] (3) Fix the prepared support liquid film on the opening of the 20mL open container in step ...
Embodiment 3
[0049] Implementation example 3: Preparation of Cs by hydrothermal support liquid film synthesis method 3 PW 12 o 40 polyhedral micro-nanostructures.
[0050] (1) Weigh a certain mass of t-BAMBP in a 250mL beaker with an electronic balance, add 100mL of the fraction of sulfonated kerosene at 200-220°C with a graduated cylinder, so that the concentration of t-BAMBP is 0.08mol / L, and stir magnetically for 1h. A membrane-forming solution is prepared, and a polytetrafluoromembrane with a diameter of 50 mm and a pore diameter of 0.22 μm is soaked in the membrane solution for 12 hours to form a supporting liquid membrane.
[0051] (2) Configure 0.025mol / L of H 3 PW 12 o 40 solution, take 20mL and place it in a 100mL polytetrafluoroethylene liner; configure 0.08mol / L of CsNO 3 Solution, take 20mL in a 20mL polytetrafluoroethylene open container.
[0052] (3) Fix the prepared support liquid film on the opening of the 20mL open container in step (2) with four PTFE support feet a...
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