Toxicity and Bioavailability of Copper Nanoparticles to the Terrestrial Plants Mung Bean (Phaseolus Radiatus) and Wheat (Triticum Aestivum): Plant Agar Test for Water-Insoluble Nanoparticles (original ) (raw )Toxicity and Uptake of CuO Nanoparticles: Evaluation of an Emerging Nanofertilizer on Wheat (Triticum aestivum L.) Plant
Gomaa A . M . Ali
Sustainability
View PDFchevron_right
Assay-Dependent Phytotoxicity of Nanoparticles to Plants
DIMITRIOS STAMPOULIS
Environmental Science & Technology, 2009
View PDFchevron_right
Toxic effects of copper-based nanoparticles or compounds to lettuce (Lactuca sativa) and alfalfa (Medicago sativa)
Arturo A Keller
Environmental Science: Processes & Impacts, 2015
View PDFchevron_right
Are Copper Nanoparticles Toxic to All Plants? A Case Study on Onion (Allium cepa L.)
Abdel Wahab M.Mahmoud
Agronomy , 2021
View PDFchevron_right
"Efficacy study of copper nano particle on plant system"
Editor Ijasre
View PDFchevron_right
Detection of nanoparticles in edible plant tissues exposed to nano-copper using single-particle ICP-MS
Arturo A Keller
Journal of Nanoparticle Research, 2018
View PDFchevron_right
Variation in polyphenolics, bioactive compounds and nutrients of barley (Hordeum vulgare L.) after exposure to copper and copper oxide nanoparticles: Health risk implications of nanofertilizers in agriculture
Belgacem Lachiheb
View PDFchevron_right
Composition effect of Cu-based nanoparticles on phytopathogenic bacteria. Antibacterial studies and phytotoxicity evaluation
Urania Menkissoglu-Spiroudi
Polyhedron, 2019
View PDFchevron_right
Modulation of CuO nanoparticles toxicity to green pea (Pisum sativum Fabaceae) by the phytohormone indole-3-acetic acid
Nestor J Bonilla Bird
View PDFchevron_right
Latent Cell Mortality After Short-Term Exposure Of Nitellopsis Obtusa Cells To Copper Oxide Nanoparticles
Kazys Sadauskas
Botanica Lithuanica, 2015
View PDFchevron_right
The toxic effect of CuO of different dispersion degrees on the structure and ultrastructure of spring barley cells (Hordeum sativum distichum)
Natalia Chernikova
Environmental Geochemistry and Health, 2020
View PDFchevron_right
Biosynthesis and effects of copper nanoparticles on plants
Nav Raten Panwar
Environmental Chemistry Letters, 2017
View PDFchevron_right
To duckweeds (Landoltia punctata), nanoparticulate copper oxide is more inhibitory than the soluble copper in the bulk solution
Aamir Abid
Environmental Pollution, 2011
View PDFchevron_right
In vitro effects of copper nanoparticles on plant pathogens, beneficial microbes and crop plants
susanta banik
Spanish Journal of Agricultural Research
View PDFchevron_right
Toxicity of copper hydroxide nanoparticles, bulk copper hydroxide, and ionic copper to alfalfa plants: A spectroscopic and gene expression study
Armando Varela-Ramirez
Environmental Pollution, 2018
View PDFchevron_right
Metal Nanoparticles – Their Use and Impact on Plants Growing in Laboratory Conditions
Danuta Kulpa
Folia Pomeranae Universitatis Technologiae Stetinensis Agricultura, Alimentaria, Piscaria et Zootechnica, 2019
View PDFchevron_right
Copper Oxide Nanoparticle Foliar Uptake, Phytotoxicity, and Consequences for Sustainable Urban Agriculture
Hervé Vezin
Environmental Science & Technology, 2017
View PDFchevron_right
Nanoscale copper in the soil-plant system - toxicity and underlying potential mechanisms
Alexander Lukatkin
Environmental research, 2015
View PDFchevron_right
{"__content__"=>"Copper Nanoparticles Induced Genotoxicty, Oxidative Stress, and Changes in Superoxide Dismutase (SOD) Gene Expression in Cucumber () Plants.", "i"=>{"__content__"=>"Cucumis sativus"}}
Emy Ibrahim
Frontiers in plant science, 2018
View PDFchevron_right
Fate of CuO and ZnO Nano- and Microparticles in the Plant Environment
Joan McLean
Environmental Science & Technology, 2013
View PDFchevron_right
Plant Mediated Green Synthesis of CuO Nanoparticles: Comparison of Toxicity of Engineered and Plant Mediated CuO Nanoparticles towards Daphnia magna
arifa tahir
Nanomaterials, 2016
View PDFchevron_right
Particle size and concentration dependent toxicity of copper oxide nanoparticles (CuONPs) on seed yield and antioxidant defense system in soil grown soybean (Glycine max cv. Kowsar)
Lok R. Pokhrel
Science of The Total Environment, 2020
View PDFchevron_right
Effect of Copper Oxide Nano Particle on Seed Germination of Selected Crops
Samaresh Kundu
Journal of Agricultural Science and Technology
View PDFchevron_right
INTERACTIONS OF PLANTS WITH NOBLE METAL NANOPARTICLES (review)
Lev Dykman
Sel'skokhozyaistvennaya Biologiya, 2017
View PDFchevron_right
Copper Oxide Nanoparticles and Bulk Particles Stress Induced Cytological and Physiological Responses of Vicia Faba L
Praveen Verma
View PDFchevron_right
Cu from dissolution of CuO nanoparticles signals changes in root morphology
Anne Anderson
Plant Physiology and Biochemistry, 2017
View PDFchevron_right
Physiological and Molecular Response of Arabidopsis thaliana (L.) to Nanoparticle Cerium and Indium Oxide Exposure
Om Parkash Dhankher
ACS Sustainable Chemistry & Engineering, 2013
View PDFchevron_right
Biogenic copper nanoparticles from Avicennia marina leaves: Impact on seed germination, detoxification enzymes, chlorophyll content and uptake by wheat seedlings
Mohamed Abdelfattah
PLOS ONE, 2021
View PDFchevron_right
Nano-CuO and interaction with nano-ZnO or soil bacterium provide evidence for the interference of nanoparticles in metal nutrition of plants
Joan McLean
Ecotoxicology, 2014
View PDFchevron_right
Nano-Formulations of Copper Species Coated with Sulfated Polysaccharide Extracts and Assessment of Their Phytotoxicity on Wheat (Triticum aestivum L.) Seedlings in Seed Germination, Foliar and Soil Applications
Hanaa Essa
Applied Sciences
View PDFchevron_right