Area of research
Electrical and Electronic Engineering · Polymers and Plastics
Research interest
Research interests include Materials science, Perovskite (structure), Carbon fibers, Energy conversion efficiency, Chemical engineering, and Passivation.
Mechanism Investigation of the Synergistically Enhanced Performance of Carbon-Based Perovskite Solar Cells Utilizing Coal-Derived Multilayer Graphene with NiO<sub><i>x</i></sub>
Synergistic electronic modulation via Sn/P dual-doping engineering enables robust bifunctional electrocatalysis in complex wastewater systems
Lamination and ITO barriers synergistically enhance stability in perovskite solar cells
Synergistic enhancement of carbon-based perovskite solar cells via Ce-MOF-derived interfacial layer and hot pressing
Dynamic-Adaptive hydrogen evolution enabled by synergistic electronic-structure engineering in biomass-derived NiCo–Mo2C@BC heterostructures
Enhanced wide temperature range and linear electrical properties in Y2/3Cu3Ti4O12-Al2O3 composite ceramics
Molecularly engineered BiO-BDC-NH2 interface for high-performance carbon-electrode perovskite photovoltaics
Dual-Functional Optimization via Cyano-Functionalized Fullerene Reconstruction and Hot-Pressing Treatment for Enhanced Performance of Carbon-Based Perovskite Solar Cells
Hydroxylated coal-derived graphene oxide as a multifunctional interlayer enabling high-performance carbon-based perovskite solar cells
Achieving high‐performance Y <sub>2/3</sub> Cu <sub>3</sub> Ti <sub>4</sub> O <sub>12</sub> thermistor ceramics with high orientation by using a sol‒gel derived strategy
Enhancing Efficiency and Stability in Carbon-Based Perovskite Solar Cells by Double Passivation with Ultralow-Cost Coal-Derived Graphene and Its Derivatives
Synthesis of multilayer graphene and its graphene derivatives from coal
Bimetallic MOFs derivative LaFeO3@C for efficient and stable carbon-based perovskite solar cells
Ultra-stable high-internal-phase emulsions fabricated solely by hydrophilic cellulose nanofiber via inter-droplet jamming
Interfacial engineering and defect passivation of SnO2 through agmatine sulfate in carbon-based perovskite solar cells
The cellulose nanocrystal jammed interfaces induced by CO2-assisted self-assembly for enhancing oil recovery
Perovskite/La-BDC heterojunction enhances the performance of carbon-based perovskite solar cells
Enhancement thermal stability and broad temperature range of Y2/3Cu3Ti4O12 thermistor ceramics by bioelectrolyte-assisted method
Sn-doped cobalt–iron hydroxide nanoarrays for enhanced electrocatalytic oxygen evolution in oilfield wastewater systems
Superhydrophilic Self-supported Perovskite Oxides for Oxygen Evolution Reactions in Oilfield Wastewater
Boosting Hole Extraction in Carbon-Based Perovskite Solar Cells Through Integration of Cubi2o4 Hierarchical Nanostructures with Polyaniline Nanobelts
Enhancement Thermal Stability and Broad Temperature Range of Y2/3cu3ti4o12 Thermistor Ceramics by Bioprotein Method
Hierarchical Nanostructures CuBi<sub>2</sub>O<sub>4</sub> Integrated with Polyaniline Nanofibrous for Boosting Hole Extraction in Carbon-Based Perovskite Solar Cells
Coal-Derived Multilayer Graphene Synergized with Niox Boosts Efficiency and Stability of Carbon-Based Perovskite Solar Cells
Enhancing Efficiency and Stability in Carbon-Based Perovskite Solar Cells Through Dual-Interface Modification
Optimization of perovskite/carbon interface performance using N-doped coal-based graphene quantum dots and its mechanism analysis
High stretchable and self-healing nanocellulose-poly(acrylic acid) composite hydrogels for sustainable CO2 shutoff
Water-Induced Cellulose Nanofibers/Poly(vinyl alcohol) Hydrogels Regulated by Hydrogen Bonding for In Situ Water Shutoff
Effective improvement of the carbon-based CsPbI2Br perovskite solar cells through additive and interface strategies
Enhancing photovoltaic performance of carbon-based perovskite solar cells by introducing plasmonic Au NPs