A kind of silver nanocluster fluorescent nanorod and its preparation method and its application in white light LED
A silver nanocluster, fluorescent nanotechnology, applied in nano-optics, nanotechnology, nanotechnology and other directions, can solve the problems of cumbersome preparation methods, increase production costs, limit synthesis methods, etc., and achieve excellent luminous intensity, low cost, and preparation. simple method effect
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Embodiment 1
[0057] A method for preparing fluorescent nanorods of silver nanoclusters, comprising the following steps:
[0058] (1)Ag 9 molecular synthesis
[0059] Accurately weigh AgNO 3 (1mmol, 170mg) and H 2 mba (1 mmol, 155 mg) was dispersed in 6 mL of water and sonicated in a KQ5200DE instrument for 20 minutes (80 W, 40 kHz), NH was added to the above mixture during sonication 3 ·H 2 O (25%, 0.5mL), yielded yellow transparent Ag 9 solution.
[0060] (2) preparation of hydrochloric acid aqueous solution
[0061] Accurately pipette the concentrated hydrochloric acid liquid, add water three times, measure it with a pH tester, and prepare an aqueous hydrochloric acid solution with pH=1;
[0062] (3) Preparation of silver nanocluster fluorescent rods
[0063] Measure 50 μL of Ag 9 For the aqueous solution, add 670 μL of water three times, then add 280 μL of hydrochloric acid with pH=1, vortex for 30 s to mix evenly, the concentration of hydrochloric acid after mixing is 28 mmol / ...
Embodiment 2
[0070] As described in Example 1, a method for preparing fluorescent nanorods of silver nanoclusters comprises the following steps:
[0071] Measure 50 μL of Ag 9 For the aqueous solution, add 650 μL of water three times, then add 300 μL of hydrochloric acid with pH=1, vortex for 30 s to mix evenly, the concentration of hydrochloric acid after mixing is 30 mmol / L, and then stand in a thermostat at 20°C for 24 hours to obtain the solution.
[0072] The Ag obtained in this embodiment 9 The molecular structure diagram of figure 1 shown. Depend on figure 1 It can be seen that Ag 9 It is a nine-core silver nanocluster.
[0073] The present embodiment obtains the TEM figure of silver nanocluster fluorescent nanorod, as figure 2 (b) shown. Silver nanocluster fluorescent nanorods present an ordered and regular structure. The nanorods have a diameter of 20-30nm and a length of 300-400nm.
Embodiment 3
[0075] As described in Example 1, a method for preparing fluorescent nanorods of silver nanoclusters comprises the following steps:
[0076] Measure 50 μL of Ag 9 For the aqueous solution, add 630 μL of water three times, then add 320 μL of hydrochloric acid with pH=1, vortex for 30 s to mix evenly, the concentration of hydrochloric acid after mixing is 32 mmol / L, and then stand in a 20°C incubator for 24 hours to obtain the product.
[0077] The Ag obtained in this embodiment 9 The molecular structure diagram of figure 1 shown. Depend on figure 1 It can be seen that Ag 9 It is a nine-core silver nanocluster.
[0078] The present embodiment obtains the TEM figure of silver nanocluster fluorescent nanorod, as figure 2 (c) shown. Silver nanocluster fluorescent nanorods present an ordered and regular structure. The nanorods have a diameter of 20-30nm and a length of 300-400nm.
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