Könyv Nanomaterials for Enhancing Photosynthetic Efficiency Azamal Husen

Nanomaterials for Enhancing Photosynthetic Efficiency

Szerző: Azamal Husen
Nyelv: Angol
Kötés: Kemény kötésű
Kiadó: Wiley-VCH
Elérhetőség: Könyvújdonság
Küldés 20. 01. 2028
63 821 Ft
Nanomaterials for Enhancing Photosynthetic Efficiency offers an authoritative and forward-looking ex...

Információk a könyvről

Szerző
Nyelv
Angol
Kötés
Könyv - Kemény kötésű
Kiadva
2028
oldal
416
EAN
9781394445783
Enbook ID
53266463
Kiadó

Teljes leírás

Nanomaterials for Enhancing Photosynthetic Efficiency offers an authoritative and forward-looking exploration of how nanotechnology is revolutionising plant science. Photosynthesis remains inherently limited in efficiency, constraining agricultural yields under mounting population and climate pressures. This book addresses these challenges by presenting cutting-edge research on the integration of engineered nanomaterials into plant systems to optimise photosynthetic performance.
The book provides a systematic analysis of how nanomaterials such as titanium dioxide (TiO©ü), zinc oxide (ZnO), silver nanoparticles, and carbon-based nanostructures influence key physiological processes, including light absorption, electron transport, chloroplast activity, and photochemical conversion. By enhancing these mechanisms, nanotechnology holds the potential to boost biomass accumulation, improve nutrient and water utilisation, and strengthen plant resilience against abiotic stresses such as drought, salinity, and temperature extremes.
Combining theoretical insights with practical applications, the book covers synthesis and characterisation techniques, mechanistic pathways, and recent experimental findings that demonstrate the molecular and physiological impacts of nanomaterials on plant tissues. It also critically examines ecological and safety considerations, ensuring a balanced perspective on sustainable implementation.
Written by leading experts in nanotechnology and plant physiology, this resource is designed for researchers, plant physiologists, agronomists, biotechnologists, and nanotechnologists seeking innovative strategies to advance crop productivity.