Area of research
Electrical and Electronic Engineering · Polymers and Plastics
Research interest
AND INTERESTS Dr. Yang’s research interest focuses on functional electronic devices (solar cells, thin film transistors, light emitting devices) which hold promise for cost effective applications. The research is a comprehensive system involving rational design of materials (organic semiconductors, hybrid perovskites, inorganic nanomaterials), the control of film morphology, crystal growth, fundamental understanding of electrical properties of the new materials and structures, understanding of nanoscale structure-property relationship, control and understanding of interface s in devices (organic/organic, organic metal etc.), new device architecture development etc. NOTABLE PUBLICATIONS AND BOOKS The surface of halide perovskites from nano to bulk. Nature Reviews Materials, 5, 809-827 (2020
Mitigating tin ion migration and reinforcing buried interface via synergistic polymer-modified tin oxide
Internal electric field design suppresses ion migration in perovskite solar cells
Inorganic perovskite/organic tandem solar cells with 25.1% certified efficiency via bottom contact modulation
Inorganic perovskite/organic tandem solar cells with 25.1% certified efficiency via bottom contact modulation
Perspectives for sustainability analysis of scalable perovskite photovoltaics
Highly stable perovskite solar cells with 0.30 voltage deficit enabled by a multi-functional asynchronous cross-linking
Kinetics Manipulation Enabled by Solubility Control Toward 19% Organic Solar Cells via Compatible Air Coating
Highly stable perovskite solar cells with 0.30 voltage deficit enabled by a multi-functional asynchronous cross-linking.
Engineering noncovalent π-stacked organic framework for intrinsic near-infrared photoactivated drug delivery.
Flexible π-stacked organic frameworks with dynamic electronic interactions for highly efficient photocatalytic hydrogen evolution
Rational molecular and device design enables organic solar cells approaching 20% efficiency
Efficient and stable perovskite solar cells with regulated depletion region
Efficient and stable perovskite solar cells with regulated depletion region
Achieving 19.4% organic solar cell via an in situ formation of p-i-n structure with built-in interpenetrating network
Custom-tailored solvent engineering for efficient wide-bandgap perovskite solar cells with a wide processing window and low <i>V</i><sub>OC</sub> losses
Rational molecular and device design enables organic solar cells approaching 20% efficiency.
High-entropy hybrid perovskites with disordered organic moieties for perovskite solar cells
High-entropy hybrid perovskites with disordered organic moieties for perovskite solar cells
Strain regulates the photovoltaic performance of thick-film perovskites
Enhanced passivation durability in perovskite solar cells via concentration-independent passivators
Perspectives for sustainability analysis of scalable perovskite photovoltaics
Inorganic surface passivation strategies of metal halide perovskites
Strain regulates the photovoltaic performance of thick-film perovskites.
Chemically Designed Crystal Growth Termination for High-Luminance and Stable Polycrystalline Perovskite LEDs
Chemically Designed Crystal Growth Termination for High-Luminance and Stable Polycrystalline Perovskite LEDs
Investigation of Defect Physics for Efficient, Durable and Ubiquitous Perovskite Solar Modules (Final Technical Report)
19.31% binary organic solar cell and low non-radiative recombination enabled by non-monotonic intermediate state transition
Oriented nucleation in formamidinium perovskite for photovoltaics
Photonic van der Waals integration from 2D materials to 3D nanomembranes
Photonic van der Waals integration from 2D materials to 3D nanomembranes
CAREER: Dynamic Catalyst Evolution from Atoms to Active Nanostructures Probed by Operando Methods
CAREER: Understanding Intermediate Sulfur Phases for Enhanced Energy Storage
CAREER: Tailoring Light-Matter Interactions in Perovskite-Based Molecular Metamaterials for Quantum-Informed Photonic Technologies.
REU Site: AI Research for Intelligent Systems and Efficiency
CAREER: CAS-Climate: Forecast-informed Flexible Reservoir System Modeling Enabled by Artificial Intelligence Algorithms Using Subseasonal-to-Seasonal Hydroclimatological Forecasts
Postdoctoral Fellowship: MSPRF: Combinatorial and Topological Properties of Triangulated Manifolds
Quantitative Analysis on High-Contrast Composite Materials
Collaborative Research: NeTS: Medium: CAML: Communication-constrained Adaptive Machine Learning in Heterogeneous Edge Networks
Collaborative Research: CAIG: Reliable Generative Downscaling for Geoscience Data
Probing the Active Tensioning Response Under Sustained Strain in Epithelial Cells
ENG/ECCS-EPSRC Advanced Interband Cascade Lasers with Innovative Quantum Well Active Regions Grown on Si Substrates
Collaborative Research: Human-centered AI for Reconfigurable Manufacturing Operation and desigN sYnthesis (HARMONY)
Collaborative Research: 2D Chiral Fingerprint Metasensor Empowered by Machine Learning for Chiral Molecule Sensing
LEAPS-MPS: Correlated Methods for Correlated Phases
Twisted semiconductors in the semiclassical regime
Ethical Thinking and Case Analysis in Artificial Intelligence Education