Sanghamitra Majumdar
Affiliations: | CT Agricultural Experiment Station |
Area:
Nanotechnology, Analytical ChemistryGoogle:
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Publications
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Majumdar S, Long RW, Kirkwood JS, et al. (2021) Unraveling Metabolic and Proteomic Features in Soybean Plants in Response to Copper Hydroxide Nanowires Compared to a Commercial Fertilizer. Environmental Science & Technology |
Majumdar S, Pagano L, Wohlschlegel JA, et al. (2019) Proteomic, gene and metabolite characterization reveal the uptake and toxicity mechanisms of cadmium sulfide quantum dots in soybean plants Environmental Science: Nano. 6: 3010-3026 |
Zhang F, Lee MH, Huang Y, et al. (2019) Effective water disinfection using magnetic barium phosphate nanoflakes loaded with Ag nanoparticles Journal of Cleaner Production. 218: 173-182 |
Majumdar S, Ma C, Villani M, et al. (2019) Surface coating determines the response of soybean plants to cadmium sulfide quantum dots Nanoimpact. 14: 100151 |
Elmer W, De La Torre-Roche R, Pagano L, et al. (2018) Effect of Metalloid and Metal Oxide Nanoparticles on Fusarium Wilt of Watermelon. Plant Disease. 102: 1394-1401 |
De La Torre Roche R, Pagano L, Majumdar S, et al. (2018) Co-exposure of imidacloprid and nanoparticle Ag or CeO2 to Cucurbita pepo (zucchini): Contaminant bioaccumulation and translocation Nanoimpact. 11: 136-145 |
Deng R, Lin D, Zhu L, et al. (2017) Nanoparticle interactions with co-existing contaminants: Joint toxicity, bioaccumulation and risk. Nanotoxicology. 1-56 |
Pagano L, Pasquali F, Majumdar S, et al. (2017) Exposure of Cucurbita pepo to binary combinations of engineered nanomaterials: physiological and molecular response Environmental Science: Nano. 4: 1579-1590 |
Servin AD, Pagano L, Castillo-Michel H, et al. (2016) Weathering in soil increases nanoparticle CuO bioaccumulation within a terrestrial food chain. Nanotoxicology. 1-45 |
Majumdar S, Peralta-Videa JR, Trujillo-Reyes J, et al. (2016) Soil organic matter influences cerium translocation and physiological processes in kidney bean plants exposed to cerium oxide nanoparticles. The Science of the Total Environment. 569: 201-211 |