Method for preparing gold nano-rods
A technology of gold nanorods and gold species, which is applied in the field of synthesis of nanomaterials, can solve the problems of difficult to obtain high-yield gold nanorods, small-sized gold nanorods with high yield, large size of gold nanorods, etc., and achieve low production cost , good reproducibility and simple operation
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[0043] A preparation method of gold nanorods, comprising the steps of:
[0044] 1) Add chloroauric acid solution and an optional gold species formation regulator to CTAB solution, then add silver nitrate solution, weak reducing agent and strong reducing agent, and react at a constant temperature of 25-40°C for 5-30 minutes to obtain reaction solution A;
[0045] 2) Adding at least one of the silver nitrate solution and the gold nanorod growth regulator solution to the reaction solution A to obtain the reaction solution B, and continue the reaction to obtain the gold nanorods.
[0046] Preferably, in the reaction solution A, the final concentration of CTAB is 0.06-0.12 M, and the final concentration of chloroauric acid is 0.04-0.08 mM.
[0047] Preferably, the reaction solution B is transferred to a constant temperature environment of 15-90° C., and the gold nanorods are grown for 0.1-24 hours.
[0048] The gold seed generation regulator is selected from sodium chloride, C 3~8 ...
Embodiment 1
[0056] Take 5mL 0.1M CTAB (containing 6.8mg NaCl) in a 25mL beaker, add 500μL chloroauric acid solution to the beaker, add 32.5μL silver nitrate solution, 50μL ascorbic acid solution, stir, then add 3μL sodium borohydride solution , transferred to a water bath at 30°C for 11 minutes, added 5 mL of deionized water, 32.5 μL of silver nitrate solution, and 5 μL of heterogeneous crystal nucleus ZnO during stirring, and transferred to a 22°C cooling cycle tank for growth for 24 hours.
Embodiment 2
[0058] Example 2 is similar to Example 1, except that after a 30°C water bath, the amount of silver nitrate solution is changed to 40 μL, the heterogeneous crystal nucleus is changed to 0.1M aluminum sulfate solution, and other conditions remain unchanged.
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