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Original Articles

Characterization of Zinc Oxide Nano Particles and Their Effect on Growth of Maize (Zea mays L.) Plant

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Pages 1505-1515 | Received 02 Aug 2012, Accepted 02 Nov 2012, Published online: 24 Jul 2015

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Crossref
Ishaq O. Adisa, Venkata L. Reddy PullaguralaJose R. Peralta-Videa, Christian O. Dimkpa, Wade H. Elmer, Jorge L. Gardea-Torresdey & Jason C. White. (2019) Recent advances in nano-enabled fertilizers and pesticides: a critical review of mechanisms of action. Environmental Science: Nano 6:7, pages 2002-2030.
Crossref
Tanushree Dutta, Damayanti Bagchi, Arpan Bera, Sayan Das, Tapan Adhikari & Samir Kumar Pal. (2019) Surface Engineered ZnO-Humic/Citrate Interfaces: Photoinduced Charge Carrier Dynamics and Potential Application for Smart and Sustained Delivery of Zn Micronutrient. ACS Sustainable Chemistry & Engineering 7:12, pages 10920-10930.
Crossref
Mikhail Ermolin, Natalia Fedyunina & Olesya Katasonova. (2019) Mobility and Fate of Cerium Dioxide, Zinc Oxide, and Copper Nanoparticles in Agricultural Soil at Sequential Wetting-Drying Cycles. Materials 12:8, pages 1270.
Crossref
Lian Xiao, Shouxia Wang, Daoyong Yang, Zhengkang Zou & Junli Li. (2019) Physiological Effects of MgO and ZnO Nanoparticles on the Citrus maxima. Journal of Wuhan University of Technology-Mater. Sci. Ed. 34:1, pages 243-253.
Crossref
N. Priyanka, N. Geetha, Mansour Ghorbanpour & Perumal Venkatachalam. 2019. Advances in Phytonanotechnology. Advances in Phytonanotechnology 183 201 .
Sunita Kataria, Meeta Jain, Anshu Rastogi, Marek Živčák, Marian Brestic, Shiliang Liu & Durgesh Kumar Tripathi. 2019. Nanomaterials in Plants, Algae and Microorganisms. Nanomaterials in Plants, Algae and Microorganisms 103 127 .
Rakhi Mahto, Neha Chatterjee, Tannu Priya & Rajesh Kumar Singh. 2019. Agronomic Crops. Agronomic Crops 605 636 .
Gauri A. Achari & Meenal Kowshik. (2018) Recent Developments on Nanotechnology in Agriculture: Plant Mineral Nutrition, Health, and Interactions with Soil Microflora. Journal of Agricultural and Food Chemistry 66:33, pages 8647-8661.
Crossref
P. Suganya & P.U. Mahalingam. (2018) Biosynthesis and Characterization of Iron Oxide Nanoparticles Synthesized using Earthworm Based Extracts. Journal of Nanoscience and Technology 4:4, pages 452-455.
Crossref
Melanie Kah, Rai Singh Kookana, Alexander Gogos & Thomas Daniel Bucheli. (2018) A critical evaluation of nanopesticides and nanofertilizers against their conventional analogues. Nature Nanotechnology 13:8, pages 677-684.
Crossref
Sandeep Kumar Verma, Ashok Kumar Das, Manoj Kumar Patel, Ashish Shah, Vinay Kumar & Saikat Gantait. (2018) Engineered nanomaterials for plant growth and development: A perspective analysis. Science of The Total Environment 630, pages 1413-1435.
Crossref
Xiaolin Chen, John O’Halloran & Marcel A. K. Jansen. (2018) Time Matters: the Toxicity of Zinc Oxide Nanoparticles to Lemna minor L. Increases with Exposure Time. Water, Air, & Soil Pollution 229:3.
Crossref
Bahareh Asadishad, Shawninder Chahal, Ali Akbari, Vanessa Cianciarelli, Mehrnoosh Azodi, Subhasis Ghoshal & Nathalie Tufenkji. (2018) Amendment of Agricultural Soil with Metal Nanoparticles: Effects on Soil Enzyme Activity and Microbial Community Composition. Environmental Science & Technology 52:4, pages 1908-1918.
Crossref
M. Seghatoleslami & E. Sabzekar. (2017) Saffron responses to summer irrigation and nano zinc oxide. Acta Horticulturae:1184, pages 115-118.
Crossref
Hemraj Chhipa. (2016) Nanofertilizers and nanopesticides for agriculture. Environmental Chemistry Letters 15:1, pages 15-22.
Crossref
D. Montalvo, F. Degryse, R.C. da Silva, R. Baird & M.J. McLaughlin. 2016. 215 267 .

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