Area of research
Electrical and Electronic Engineering · Polymers and Plastics
Research interest
Research focused on Ternary operation and Kinetics, with related work in Organic solar cell, Passivation, Crystallization. Notable publications include 'Guest Acceptors with Lower Electrostatic Potential in Ternary Organic Solar Cells for Minimizing Voltage Losses', 'Alkyl Chains Tune Molecular Orientations to Enable Dual Passivation in Inverted Perovskite Solar Cells', and 'Modulation of crystallization kinetics using a guest acceptor for high-performance organic solar cells with 19.8% efficiency'.
Asymmetric non-fullerene acceptors with balanced crystallization kinetics enabling a trade-off between charge generation and recombination in ternary organic solar cells
A Giant Acceptor with a Novel Oxygenated Linker Modulates Molecular Crystallization Kinetics for High‐Efficiency Non‐Halogenated‐Processed Organic Solar Cells
Guest Acceptors with Lower Electrostatic Potential in Ternary Organic Solar Cells for Minimizing Voltage Losses
Alkyl Chains Tune Molecular Orientations to Enable Dual Passivation in Inverted Perovskite Solar Cells
Modulation of crystallization kinetics using a guest acceptor for high-performance organic solar cells with 19.8% efficiency
Alkyl Chains Tune Molecular Orientations to Enable Dual Passivation in Inverted Perovskite Solar Cells
Quinoxaline-based non-fullerene guest acceptor enables ternary organic solar cells achieving 18.9% efficiency via reducing energy loss and regulating morphology
Highly efficient ternary organic solar cells with excellent open-circuit voltage and fill factor via precisely tuning molecular stacking and morphology