Area of research
Global and Planetary Change · Environmental Engineering
Research interest
Research focused on Evapotranspiration and Environmental science, with related work in Photoluminescence, Scintillator, Passivation. Notable publications include 'Cs 3 Cu 2 I 5 Nanocrystals with Near-Unity Photoluminescence Quantum Yield for Stable and High-Spatial-Resolution X-ray Imaging', 'A Framework for Quantifying the Uncertainty in Upscaling Evapotranspiration From Homogeneous to Heterogeneous Underlying Surface', and 'A Hybrid Model Coupling Physical Constraints and Machine Learning to Estimate Daily Evapotranspiration in the Heihe River Basin'.
Transparent Organic Glass With Bright Triplet Excitons for High‐Spatial‐Resolution Indirect X‐Ray Imaging via Heavy Metal Halide Incorporation
Regional simulation of water-carbon fluxes and winter wheat yield with assimilation of multi-source remote sensing data in the Haihe River Basin
A hierarchical multi-scale machine learning framework for GRACE derivatives downscaling in the Heihe River Basin
A Framework for Quantifying the Uncertainty in Upscaling Evapotranspiration From Homogeneous to Heterogeneous Underlying Surface
A Hybrid Model Coupling Physical Constraints and Machine Learning to Estimate Daily Evapotranspiration in the Heihe River Basin
Analysis of Spatial and Temporal Variations in Evapotranspiration and Its Driving Factors Based on Multi-Source Remote Sensing Data: A Case Study of the Heihe River Basin
Cs<sub>3</sub>Cu<sub>2</sub>I<sub>5</sub> Nanocrystals with Near-Unity Photoluminescence Quantum Yield for Stable and High-Spatial-Resolution X-ray Imaging