Area of research
Molecular Biology · Statistical and Nonlinear Physics
Research interest
Research focused on Folding (DSP implementation) and Overpotential, with related work in Bioenergetics, Vascular smooth muscle, Cell biology. Notable publications include 'Ternary Fe x Co 1– x P Nanowire Array as a Robust Hydrogen Evolution Reaction Electrocatalyst with Pt-like Activity: Experimental and Theoretical Insight', 'Physical bioenergetics: Energy fluxes, budgets, and constraints in cells', and 'Matrix stiffness determines the phenotype of vascular smooth muscle cell in vitro and in vivo: Role of DNA methyltransferase 1'.
Exposure to nano-polystyrene during pregnancy leads to Alzheimer's disease-related pathological changes in adult offspring
Detection, distribution, and functions of RNA N6-methyladenosine (m6A) in plant development and environmental signal responses
Antibody Generation and Rapid Immunochromatography Using Time-Resolved Fluorescence Microspheres for Propiconazole: Fungicide Abused as Growth Regulator in Vegetable
Physical bioenergetics: Energy fluxes, budgets, and constraints in cells
Sugarcane/peanut intercropping system improves the soil quality and increases the abundance of beneficial microbes
Investigating the Conformational Dynamics of a Y-Family DNA Polymerase during Its Folding and Binding to DNA and a Nucleotide
Laminar Flow Protects Vascular Endothelial Tight Junctions and Barrier Function via Maintaining the Expression of Long Non-coding RNA MALAT1
Confinement and Crowding Effects on Folding of a Multidomain Y-Family DNA Polymerase
Investigating the trade-off between folding and function in a multidomain Y-family DNA polymerase
Binding-Induced Conformational Changes Involved in Sliding Clamp PCNA and DNA Polymerase DPO4
Author response: Investigating the trade-off between folding and function in a multidomain Y-family DNA polymerase
Matrix stiffness determines the phenotype of vascular smooth muscle cell in vitro and in vivo: Role of DNA methyltransferase 1
Ternary Fe<sub><i>x</i></sub>Co<sub>1–<i>x</i></sub>P Nanowire Array as a Robust Hydrogen Evolution Reaction Electrocatalyst with Pt-like Activity: Experimental and Theoretical Insight