Area of research
Electrical and Electronic Engineering · Condensed Matter Physics
Research interest
Research focused on Combustion and NOx, with related work in Transistor, Homogeneous charge compression ignition, Proton exchange membrane fuel cell. Notable publications include 'Influence of LDD Spacers and H + Transport on the Total-Ionizing-Dose Response of 65-nm MOSFETs Irradiated to Ultrahigh Doses', 'Experimental investigation on combustion characteristics and influencing factors of PODE/methanol dual-fuel engine', and 'Effects of EGR on combustion and emission characteristics of PODE/methanol RCCI mode at high load'.
Effects of EGR on combustion and emission characteristics of PODE/methanol RCCI mode at high load
Effects of different heat transfer fluids on thermal distribution and electrochemical performance of PEMFC with a non-isothermal multiphase model
Ag-loaded CeO2 catalysts for soot and C3H6 oxidation: Effect of Ag/Ce3+ on oxygen vacancies
Experimental investigation on combustion characteristics and influencing factors of PODE/methanol dual-fuel engine
Theoretical and experimental investigation of physicochemical properties and combustion performance of PODE/methanol blends
Total-Ionizing-Dose Response of Highly Scaled Gate-All-Around Si Nanowire CMOS Transistors
Influence of LDD Spacers and H<sup>+</sup>Transport on the Total-Ionizing-Dose Response of 65-nm MOSFETs Irradiated to Ultrahigh Doses