Eco-friendly control of red palm weevil using green synthesized silver nanoparticles of chlorophyll derivatives
Silver nanoparticles made by a green synthesis method using silver nitrate and a chlorophyll derivative, such as a chlorophyllin are provided. The thus produced silver nanoparticles can have a crystalline structure and an average particle size ranging from about 10 nm to about 40 nm. The disclosed silver nanoparticles may be useful in treating, preventing, and/or reducing insect infestation of a variety of plants, particularly date palms.
1. Silver nanoparticles prepared by a method comprising:
mixing a solution of chlorophyllin with a solution of silver nitrate to provide a silver solution;
heating the silver solution at a temperature of about 80° C. for about 3 hours to obtain a heated solution containing silver nanoparticles;
centrifuging the heated solution containing silver nanoparticles to separate initial silver nanoparticles from the heated solution;
redispersing the initial silver nanoparticles in water to obtain a silver nanoparticle dispersion; and
centrifuging the silver nanoparticle dispersion to obtain the silver nanoparticles.
2. The silver nanoparticles of claim 1 , wherein the silver nanoparticles are spherical and have an average particle diameter of about 10 nm to about 40 nm.
3. The silver nanoparticles of claim 1 , wherein the silver nanoparticles have an average particle diameter of about 50.4 nm.
4. The silver nanoparticles of claim 1 , wherein chlorophyllin is adsorbed on the silver nanoparticles.
5. The silver nanoparticles of claim 1 , wherein the chlorophyllin is chlorophyllin sodium copper salt.
6. The silver nanoparticles of claim 1 , wherein the solution of chlorophyllin contains about 300 μg of chlorophyllin per mL of water.
7. The silver nanoparticles of claim 6 , wherein the solution of silver nitrate is an about 10 mM solution of silver nitrate in water.
8. The silver nanoparticles of claim 1 , wherein the silver nanoparticles are capped with the chlorophyllin.
9. The silver nanoparticles of claim 1 , further comprising lyophilizing the silver nanoparticles to obtain lyophilized silver nanoparticles (L-AgNPs) powder.