Area of research
Materials Chemistry · Pollution
Research interest
Research focused on Agriculture and Sustainability, with related work in Nanoparticle, Sustainable agriculture, Cytokine release syndrome. Notable publications include 'Identification of Predictive Biomarkers for Cytokine Release Syndrome after Chimeric Antigen Receptor T-cell Therapy for Acute Lymphoblastic Leukemia', 'Nano-enabled pesticides for sustainable agriculture and global food security', and 'Technology readiness and overcoming barriers to sustainably implement nanotechnology-enabled plant agriculture'.
Sustained superiority of biochar over straw for enhancing soil biological-phosphorus via the mediation of phoD-harboring bacteria in subtropical Moso bamboo forests
Fate and Physiological Effects of Foliar Selenium Nanoparticles in Wheat
Engineered nanoparticle transformations: Rethinking toxicity in water
Biochar mitigates the suppressive effects of nitrogen deposition on soil methane uptake in a subtropical forest
Optimizing SiO<sub>2</sub> Nanoparticle Structures to Enhance Drought Resistance in Tomato (<i>Solanum lycopersicum</i> L.): Insights into Nanoparticle Dissolution and Plant Stress Response
Divergent effects of straw and biochar on soil carbon priming are depth-dependent in subtropical Moso bamboo forests
Upcycling trace amounts of biomass waste into flash graphene can boost crop yields by more than a quarter and offer climate benefits
Tunable NPK Release from Surface-Esterified Nanocellulose-Based Prills
Towards realizing nano-enabled precision delivery in plants
Strategies for Enhancing Plant Immunity and Resilience Using Nanomaterials for Sustainable Agriculture
Maize straw increases while its biochar decreases native organic carbon mineralization in a subtropical forest soil
Biochar-based urea increases soil methane uptake in a subtropical forest
Pyrogenic organic matter decreases while fresh organic matter increases soil heterotrophic respiration through modifying microbial activity in a subtropical forest
Silica nanoparticles enhance plant disease resistance by modulating the endophyte community structure in tomato (<i>Solanum lycopersicum</i> L.) roots
Modifying engineered nanomaterials to produce next generation agents for environmental remediation
Changes in soil CO2 and N2O emissions in response to urea and biochar-based urea in a subtropical Moso bamboo forest
Modifying soluble NPK release with hydrophobized nanocellulose-based hydrogels for sustainable enhanced efficiency fertilizers
Transcriptome Analysis Reveals the Growth Promotion Mechanism of Enteropathogenic <i>Escherichia coli</i> Induced by Black Phosphorus Nanosheets
Nano-enabled pesticides for sustainable agriculture and global food security
Bioengineered chitosan-iron nanocomposite controls bacterial leaf blight disease by modulating plant defense response and nutritional status of rice (Oryza sativa L.)
Biochar nanoparticle-induced plant immunity and its application with the elicitor methoxyindole in <i>Nicotiana benthamiana</i>
Benefit of nano-enabled agrochemicals
Role of Charge and Size in the Translocation and Distribution of Zinc Oxide Particles in Wheat Cells
Technology readiness and overcoming barriers to sustainably implement nanotechnology-enabled plant agriculture
Mechanism of zinc oxide nanoparticle entry into wheat seedling leaves
Copper sulfide nanoparticles suppress <i>Gibberella fujikuroi</i> infection in rice (<i>Oryza sativa</i> L.) by multiple mechanisms: contact-mortality, nutritional modulation and phytohormone regulation
Safeguarding human and planetary health demands a fertilizer sector transformation
Delivery, uptake, fate, and transport of engineered nanoparticles in plants: a critical review and data analysis
Proteomic, gene and metabolite characterization reveal the uptake and toxicity mechanisms of cadmium sulfide quantum dots in soybean plants
Particle-size dependent bactericidal activity of magnesium oxide against Xanthomonas perforans and bacterial spot of tomato