Synthesis and characterization of nitric oxide donor nanostructured dendritic mesoporous tetrasulfide-bridged organosilica with prospects for environmental application
The objective of this study was to develop and optimize nanomaterials capable of enhancing the essential parameters of plant growth. To achieve this objective, nanoparticle-based nitric oxide (NO) donors and graphene oxide quantum dots (GQDs) were synthesized. Carbon quantum dots and graphene quantu...
Elmentve itt :
| Szerzők: | |
|---|---|
| Testületi szerző: | |
| Dokumentumtípus: | Könyv része |
| Megjelent: |
University of Szeged
Szeged
2025
|
| Sorozat: | Proceedings of the International Symposium on Analytical and Environmental Problems
31 |
| Kulcsszavak: | Nanotechnológia, Növénybiológia, Környezetkémia |
| Tárgyszavak: | |
| Online Access: | http://acta.bibl.u-szeged.hu/88695 |
| Tartalmi kivonat: | The objective of this study was to develop and optimize nanomaterials capable of enhancing the essential parameters of plant growth. To achieve this objective, nanoparticle-based nitric oxide (NO) donors and graphene oxide quantum dots (GQDs) were synthesized. Carbon quantum dots and graphene quantum dots (GQDs) exhibit minimal inhibition of the natural growth pathways of plants and have demonstrated potential to enhance growth while maintaining good biocompatibility. The NO donor was designed as nanostructured dendritic mesoporous tetrasulfide-bridged organosilica nanoparticles (DMON NPs), which have been modified with S-nitrosothiol (SNO) to facilitate a controlled and sustained release of NO. These characterizations are crucial to assess comprehensively the performance and potential applications of the nanoparticles in agricultural and plant biotechnology contexts. |
|---|---|
| Terjedelem/Fizikai jellemzők: | 278-281 |
| ISBN: | 978-963-688-078-1 |