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Adalberto Benavides‐Mendoza

Researcher Next ID · RN-043574

Researcher · Agricultural and Biological Sciences

Universidad Autónoma Agraria Antonio Narro

Saltillo, Mexico

Accepting doctoral researchersFunding unknown
Works count
425
Citation count
6,002
H-index
39
i10-index
105

Research interests

Agricultural and Biological Sciences
Materials Science
Plant and soil sciences
Plant Physiology and Cultivation Studies
Plant Growth Enhancement Techniques
Nanoparticles: synthesis and applications
Growth and nutrition in plants

Publications

  • Eco-Efficient Systems Based on Nanocarriers for the Controlled Release of Fertilizers and Pesticides: Toward Smart Agriculture

    Nanomaterials · 2023 · 10.3390/nano13131978

  • Nanoparticles as a Promising Strategy to Mitigate Biotic Stress in Agriculture

    Antibiotics · 2023 · 10.3390/antibiotics12020338

  • Silver, copper and copper oxide nanoparticles in the fight against human viruses: progress and perspectives

    Critical Reviews in Biotechnology · 2021 · 10.1080/07388551.2021.1939260

  • Transcriptomics of Biostimulation of Plants Under Abiotic Stress

    Frontiers in Genetics · 2021 · 10.3389/fgene.2021.583888

  • Effect of Three Nanoparticles (Se, Si and Cu) on the Bioactive Compounds of Bell Pepper Fruits under Saline Stress

    Plants · 2021 · 10.3390/plants10020217

  • Biostimulation and toxicity: The magnitude of the impact of nanomaterials in microorganisms and plants

    Journal of Advanced Research · 2021 · 10.1016/j.jare.2020.12.011

  • Form of Silica Improves Yield, Fruit Quality and Antioxidant Defense System of Tomato Plants under Salt Stress

    Agriculture · 2020 · 10.3390/agriculture10090367

  • Nanoparticles and Nanomaterials as Plant Biostimulants

    International Journal of Molecular Sciences · 2019 · https://doi.org/10.3390/ijms20010162

  • Responses of Tomato Plants under Saline Stress to Foliar Application of Copper Nanoparticles

    Plants · 2019 · 10.3390/plants8060151

  • Se Nanoparticles Induce Changes in the Growth, Antioxidant Responses, and Fruit Quality of Tomato Developed under NaCl Stress

    Molecules · 2019 · 10.3390/molecules24173030

  • The Application of Selenium and Copper Nanoparticles Modifies the Biochemical Responses of Tomato Plants under Stress by Alternaria solani

    International Journal of Molecular Sciences · 2019 · 10.3390/ijms20081950

  • From Elemental Sulfur to Hydrogen Sulfide in Agricultural Soils and Plants

    Molecules · 2019 · 10.3390/molecules24122282

  • Effects of Chitosan–PVA and Cu Nanoparticles on the Growth and Antioxidant Capacity of Tomato under Saline Stress

    Molecules · 2018 · 10.3390/molecules23010178

  • The application of copper nanoparticles and potassium silicate stimulate the tolerance to Clavibacter michiganensis in tomato plants

    Scientia Horticulturae · 2018 · 10.1016/j.scienta.2018.10.007

  • Foliar Application of Copper Nanoparticles Increases the Fruit Quality and the Content of Bioactive Compounds in Tomatoes

    Applied Sciences · 2018 · 10.3390/app8071020

  • Chitosan-PVA and Copper Nanoparticles Improve Growth and Overexpress the SOD and JA Genes in Tomato Plants under Salt Stress

    Agronomy · 2018 · 10.3390/agronomy8090175

  • Application of nanoelements in plant nutrition and its impact in ecosystems

    Advances in Natural Sciences Nanoscience and Nanotechnology · 2017 · 10.1088/2043-6254/8/1/013001

  • Selenium and Sulfur to Produce Allium Functional Crops

    Molecules · 2017 · 10.3390/molecules22040558

  • Cu Nanoparticles absorbed on chitosan hydrogels positively alter morphological, production, and quality characteristics of tomato

    Federal Research Centre for Cultivated Plants (Julius Kühn-Institut) · 2016 · 10.5073/jabfq.2016.089.023

  • Use of Iodine to Biofortify and Promote Growth and Stress Tolerance in Crops

    Frontiers in Plant Science · 2016 · 10.3389/fpls.2016.01146

Current projects

    No projects listed.