Services on Demand
Journal
Article
Indicators
Cited by SciELO
Access statistics
Related links
Similars in
SciELO
Share
Terra Latinoamericana
On-line version ISSN 2395-8030Print version ISSN 0187-5779
Abstract
PEREZ-MADRIGAL, Vicente et al. Morphological and Biochemical Responses of Coffee Seedlings (Coffea arabica L.) to Foliar Application of ZnO and ZnO/Ag Nanoparticles. Terra Latinoam [online]. 2025, vol.43, e2285. Epub Apr 09, 2026. ISSN 2395-8030. https://doi.org/10.28940/terra.v43i.2285.
The application of nanotechnologies in agriculture has gained in importance in recent years, and their impact on plant growth and development has been documented with successes and limitations. In the case of coffee cultivation, it is a viable alternative compatible with mineral fertilization schemes. The objective of this research was to study the physiological effect of zinc oxide nanoparticles (ZnONPs) and silver-impregnated zinc oxide (ZnONPs/AgNPs), synthesized through the sol-gel method on vegetative growth, total chlorophyll concentration, and the synthesis of functional groups in coffee (Coffea arabica L.) seedlings. The nanoparticles were characterized by X-ray diffraction (XRD) and applied to the leaves. Plant height, stem diameter, leaves per plant, and leaf area, concentration of total chlorophylls and functional groups were measured by FT-IR spectroscopy. X-ray diffraction (XRD) analysis confirmed the crystalline nature of the synthesized nanoparticles, which showed sharp peaks consistent with the hexagonal wurtzite structure, while the ZnONPs/AgNPs showed structures corresponding to the cubic phase of metallic silver. A 58.18% increase in plant height was observed upon application of ZnONPs compared to the control, and 34.78% increase in the number of leaves per plant. The highest chlorophyll concentration was recorded when combining ZnONPs+2.5AgNPs plus fertilizer, with an increase of 81.8% with respect to the control. The combined treatment of ZnONPs/AgNPs with fertilizer significantly increased the accumulation of compounds such as caffeine, sucrose, and carbohydrates. These results demonstrate the potential of nanofertilizers as growth promoters and modulators of functional metabolism in coffee seedlings, although direct parameters of productivity and bean quality were not evaluated.
Keywords : FT-IR; growth promoter; nanofertilizers; ZnO nanoparticles.












