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Thesis
An Efficient Preparation and Characterization of Nanocomposite Films Based on Poly(Vinyl Chloride) and Modified Zno Quantum Dot with an Optically Active Diacid Containing Amino Acid as Coupling Agent
Effect of foliar applications of aminolevulinic acid (bulk and nano-encapsulated) on bell pepper under heat stress
Biochemical responses of sorghum and maize to the impacts of different levels of water deficit and nitrogen supply
Environmentally friendly functionalization of multiwalled carbon nanotube using ascorbic acid and efficient dispersion in chiral poly(ester-imide) containing 4,4′-thiobis(2-tert-butyl-5-methylphenol) moiety: thermal and morphological studies
Comparison of Growth Responses in Sorghum Genotypes and Corn Grown in Arid Regions Under Different Levels of Water and Nitrogen Supplies
Molten salt-supported polycondensation of optically active diacid monomers with an aromatic thiazole bearing diamine using microwave irradiation
Salt Stress Mitigation via the Foliar Application of Chitosan-Functionalized Selenium and Anatase Titanium Dioxide Nanoparticles in Stevia (Stevia rebaudiana Bertoni)
592. Mallakpour S, Soltanian S, Environmentally friendly functionalization of multiwalled carbon nanotube using ascorbic acid and efficient dispersion in chiral poly(ester-imide) containing 4,4′-thiobis(2-tert-butyl-5-methylphenol) moiety: thermal and mor
Application of abscisic acid and melatonin nanocapsules in two cultivar of bell pepper under salt stress.
Drought preconditioning improves freezing tolerance in drought-tolerant and -intolerant grape cultivars
Drought preconditioning improves freezing tolerance in drought-tolerant and -intolerant grape cultivars
Use of valine amino acid functionalized α-MnO2/chitosan bionanocomposites as potential Sorbents for the Removal of lead (II) ions from the aqueous solution,
Effect of amino acid-functionalization on the interfacial adhesion and behavior of multi-walled carbon nanotubes/poly (amide-imide) nanocomposites containing thiazole side unit
The candidate transcription factors PnAtfA, PnCrz1, and PnVf19 contribute to fungal morphogenesis, abiotic stress tolerance, and pathogenicity in the wheat pathogen Parastagonospora nodorum
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