Area of research
Materials Chemistry · Pollution
Research interest
Research interests include Chemistry, Environmental chemistry, Environmental science, Adsorption, Phenanthrene, and Nanoparticle.
Hydration and physicochemical immobilization mechanisms of pozzolanic-hazardous waste in supersulfated cement
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
Livestock–Crop–Mushroom (LCM) Circular System: An Eco-Friendly Approach for Enhancing Plant Performance and Mitigating Microbiological Risks
Upcycling trace amounts of biomass waste into flash graphene can boost crop yields by more than a quarter and offer climate benefits
Microbially Driven Iron Cycling Facilitates Organic Carbon Accrual in Decadal Biochar-Amended Soil
Arbuscular Mycorrhizal Fungus Alleviates Charged Nanoplastic Stress in Host Plants via Enhanced Defense-Related Gene Expressions and Hyphal Capture
Quantifying the negative effects of dissolved organic carbon of maize straw-derived biochar on its carbon sequestration potential in a paddy soil
Genome-Wide Molecular Adaptation in Algal Primary Productivity Induced by Prolonged Exposure to Environmentally Realistic Concentration of Nanoplastics
Silica nanoparticles enhance plant disease resistance by modulating the endophyte community structure in tomato (<i>Solanum lycopersicum</i> L.) roots
Fe Crystalline Phases in Fe/C Composites Modulated the Selective Adsorption of Pb(II) from Industrial Wastewater with Cd(II): An Electronic-Scale Perspective
Biochar soil addition alters ant functional traits as exemplified with three species
Important Role of Concave Surfaces in Deposition of Colloids under Favorable Conditions as Revealed by Microscale Visualization
Direct toxicity of environmentally persistent free radicals to nematode Caenorhabditis elegans after excluding the concomitant chemicals
Nano-biochar modulates the formation of iron plaque through facilitating iron-involved redox reactions on aquatic plant root surfaces
Presence of microplastics alone and co-existence with hydrochar unexpectedly mitigate ammonia volatilization from rice paddy soil and affect structure of soil microbiome
Role of Charge and Size in the Translocation and Distribution of Zinc Oxide Particles in Wheat Cells
Influence of different types of nanomaterials on soil enzyme activity: A global meta-analysis
Raw material of water-washed hydrochar was critical for the mitigation of GHGI in infertile paddy soil: a column experiment
Formation of silver nanoparticles in aquatic environments facilitated by algal extracellular polymeric substances: Importance of chloride ions and light
Differentially charged nanoplastics demonstrate distinct accumulation in Arabidopsis thaliana
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
Bentonite hydrochar composites mitigate ammonia volatilization from paddy soil and improve nitrogen use efficiency
Hydrochar reduced NH3 volatilization from rice paddy soil: Microbial-aging rather than water-washing is recommended before application
Wood vinegar and biochar co-application mitigates nitrous oxide and methane emissions from rice paddy soil: A two-year experiment
Can the properties of engineered nanoparticles be indicative of their functions and effects in plants?
Physicochemical properties of aged hydrochar in a rice-wheat rotation system: A 16-month observation
Insights into the molecular transformation in the dissolved organic compounds of agro-waste-hydrochars by microbial-aging using electrospray ionization Fourier transform ion cyclotron resonance mass spectrometry
Reaction of Substituted Phenols with Lignin Char: Dual Oxidative and Reductive Pathways Depending on Substituents and Conditions
Organo-mineral complexes protect condensed organic matter as revealed by benzene-polycarboxylic acids