Ullah, R.; Ullah, Z.; Iqbal, J.; Chalgham, W.; Ahmad, A.
Aspartic Acid-Based Nano-Copper Induces Resilience in Zea mays to Applied Lead Stress Via Conserving Photosynthetic Pigments and Triggering the Antioxidant Biosystem. Sustainability 2023, 15, 12186.
https://doi.org/10.3390/su151612186
AMA Style
Ullah R, Ullah Z, Iqbal J, Chalgham W, Ahmad A.
Aspartic Acid-Based Nano-Copper Induces Resilience in Zea mays to Applied Lead Stress Via Conserving Photosynthetic Pigments and Triggering the Antioxidant Biosystem. Sustainability. 2023; 15(16):12186.
https://doi.org/10.3390/su151612186
Chicago/Turabian Style
Ullah, Rehman, Zakir Ullah, Javed Iqbal, Wadie Chalgham, and Ajaz Ahmad.
2023. "Aspartic Acid-Based Nano-Copper Induces Resilience in Zea mays to Applied Lead Stress Via Conserving Photosynthetic Pigments and Triggering the Antioxidant Biosystem" Sustainability 15, no. 16: 12186.
https://doi.org/10.3390/su151612186
APA Style
Ullah, R., Ullah, Z., Iqbal, J., Chalgham, W., & Ahmad, A.
(2023). Aspartic Acid-Based Nano-Copper Induces Resilience in Zea mays to Applied Lead Stress Via Conserving Photosynthetic Pigments and Triggering the Antioxidant Biosystem. Sustainability, 15(16), 12186.
https://doi.org/10.3390/su151612186