Area of research
Molecular Biology · Fluid Flow and Transfer Processes
Research interest
Research focused on Combustion and Pyrolysis, with related work in Jet fuel, Sensitization, Porphyrin. Notable publications include 'A physics-based approach to modeling real-fuel combustion chemistry - I. Evidence from experiments, and thermodynamic, chemical kinetic and statistical considerations', 'A physics-based approach to modeling real-fuel combustion chemistry – II. Reaction kinetic models of jet and rocket fuels', and 'A Physics-based approach to modeling real-fuel combustion chemistry – III. Reaction kinetic model of JP10'.
A Solution‐Processable Porphyrin‐Based Hydrogen‐Bonded Organic Framework for Photoelectrochemical Sensing of Carbon Dioxide
Anaerobic selenite-reducing bacteria and their metabolic potentials in Se-rich sediment revealed by the combination of DNA-stable isotope probing, metagenomic binning, and metatranscriptomics
Surface Wear Behavior and Friction and Wear Mechanism Studies of A356/3 wt.% Al3Zr Composites
Interactions among chilling tolerance, sucrose degradation and organic acid metabolism in UV-C-irradiated peach fruit during postharvest cold storage
Simple and sensitive detection of acrylamide based on hemoglobin immobilization in carbon ionic liquid paste electrode
A physics-based approach to modeling real-fuel combustion chemistry - I. Evidence from experiments, and thermodynamic, chemical kinetic and statistical considerations
A physics-based approach to modeling real-fuel combustion chemistry – II. Reaction kinetic models of jet and rocket fuels
A Physics-based approach to modeling real-fuel combustion chemistry – III. Reaction kinetic model of JP10
A photoelectrochemical sensor for highly sensitive detection of amyloid beta based on sensitization of Mn:CdSe to Bi2WO6/CdS
A high pressure shock tube study of pyrolysis of real jet fuel Jet A
HEEDS Optimized HyChem Mechanisms