Area of research
Electrical and Electronic Engineering · Polymers and Plastics
Research interest
Research focused on Organic solar cell and Polythiophene, with related work in Ternary operation, Energy conversion efficiency, Miscibility. Notable publications include 'Small-molecule solar cells with efficiency over 9%', 'Solution-processed organic tandem solar cells with power conversion efficiencies >12%', and 'Optimization Requirements of Efficient Polythiophene:Nonfullerene Organic Solar Cells'.
PdRh bimetallic-loaded α-Fe2O3 nanospindles with Ppb-limit of 3-hydroxy-2-butanone biomarker detection: Particle dimension regulation and oxygen spillover effect
Dual-Mechanism Insights into the Peroxidase-like Activity of Co<sub>3</sub>O<sub>4</sub> Nanoparticles: Nonradical and Superoxide Radical Catalysis
Design of Ultra‐Narrow Bandgap Polymer Acceptors for High‐Sensitivity Flexible All‐Polymer Short‐Wavelength Infrared Photodetectors
Protocatechuic acid relieves ferroptosis in hepatic lipotoxicity and steatosis via regulating NRF2 signaling pathway
Miscibility screening promotes the efficiency and stability of P3HT‐based organic solar cells
Revealing the intrinsic peroxidase-like catalytic mechanism of O-doped CoS<sub>2</sub> nanoparticles
Modulation of Morphological, Mechanical, and Photovoltaic Properties of Ternary Organic Photovoltaic Blends for Optimum Operation
Calculation aided miscibility manipulation enables highly efficient polythiophene:nonfullerene photovoltaic cells
Optimization Requirements of Efficient Polythiophene:Nonfullerene Organic Solar Cells
Molecular Engineering and Morphology Control of Polythiophene:Nonfullerene Acceptor Blends for High‐Performance Solar Cells
Two synthetic routes generate two isopolyoxoniobates based on {Nb<sub>16</sub>} and {Nb<sub>20</sub>}
Solution-processed organic tandem solar cells with power conversion efficiencies >12%
Small-molecule solar cells with efficiency over 9%
<i>N</i>-Heterocyclic Carbene Catalyzed Intramolecular Acylation of Allylic Electrophiles