Preparation method of silver nano particles and method for facilitating germination of cucumber seeds and growth and development of seedlings with silver nano particles
A silver nanoparticle and nanoparticle technology, which is applied in the field of nanomaterial preparation and performance research, can solve the problem of the influence of cucumber seed germination, which has not yet been reported, and achieves easy large-scale production, low requirements for reaction conditions, and large-scale production. production effect
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Embodiment 1
[0046] (1) Measure 20 mL at an ambient temperature of 15°C, 0.1 mol L -1 AgNO 3 Aqueous solution, add 0.2 g PVP powder under stirring and continue stirring until completely dissolved. Measure 20 mL, 0.1 mol·L -1 The α-alanine aqueous solution was added to the above solution under stirring, then the stirring was stopped, and the reaction system was left to stand.
[0047] (2) After standing for 10 minutes, the reaction system gradually turned into a dark brown optically transparent solution, indicating that small-sized nanoparticles had formed at this time. The solution was centrifuged at 1000 rpm / min for 10 minutes with a high-speed centrifuge, and the light yellow supernatant was poured back into the reaction vessel, and silver nanoparticles with a size of about 20 nanometers were obtained at the bottom of the centrifuge tube.
[0048] (3) The supernatant liquid obtained from the first centrifugation was left to stand for about 30 minutes and then transformed into a dark b...
Embodiment 2
[0059] (1) Measure 20 mL at an ambient temperature of 15°C, 0.1 mol L -1 AgNO 3 Aqueous solution, add 0.1 g PVP powder under stirring state and continue stirring until completely dissolved. Measure 20 mL, 0.1 mol·L -1 The α-alanine aqueous solution was added to the above solution under stirring, then the stirring was stopped, and the reaction system was left to stand.
[0060] (2) After standing for 10 minutes, the reaction system gradually turned into a dark brown optically transparent solution, indicating that small-sized nanoparticles had formed at this time. The solution was centrifuged at 1000 rpm / min for 10 minutes with a high-speed centrifuge, and the light yellow supernatant was poured back into the reaction vessel, and silver nanoparticles with a size of about 20 nanometers were obtained at the bottom of the centrifuge tube.
[0061] (3) The supernatant liquid obtained from the first centrifugation was left to stand for about 30 minutes and then transformed into a ...
Embodiment 3
[0077] (1) Measure 20 mL at an ambient temperature of 25°C, 0.1 mol L -1 AgNO 3 Aqueous solution, add 0.2 g PVP powder under stirring and continue stirring until completely dissolved. Measure 20 mL, 0.1 mol·L -1 The α-alanine aqueous solution was added to the above solution under stirring, then the stirring was stopped, and the reaction system was left to stand.
[0078] (2) After standing for 5 minutes, the reaction system gradually turned into a dark brown optically transparent solution, indicating that small-sized nanoparticles had formed at this time. The solution was centrifuged at 1000 rpm / min for 10 minutes with a high-speed centrifuge, and the light yellow supernatant was poured back into the reaction vessel, and silver nanoparticles with a size of about 20 nanometers were obtained at the bottom of the centrifuge tube.
[0079] (3) The supernatant liquid obtained from the first centrifugation is left to stand for about 15 minutes and then transformed into a dark bro...
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