Area of research
Global and Planetary Change · Ecology
Research interest
Research interests include Environmental science, Photosynthesis, Vegetation (pathology), Climate change, Atmospheric sciences, and Canopy.
Incorporating site suitability and carbon sequestration of tree species into China’s climate-adaptive forestation
Plant traits shape global spatiotemporal variations in photosynthetic efficiency
Mapping the global distribution of C4 vegetation using observations and optimality theory
Stronger increases but greater variability in global mangrove productivity compared to that of adjacent terrestrial forests
Global datasets of hourly carbon and water fluxes simulated using a satellite-based process model with dynamic parameterizations
Challenges and Future Directions in Quantifying Terrestrial Evapotranspiration
Systematic Underestimation of Canopy Conductance Sensitivity to Drought by Earth System Models
Seasonal variation in the relationship between leaf chlorophyll content and photosynthetic capacity
Biophysical effects of croplands on land surface temperature
Strong Green‐Up of Tropical Asia During the 2015/16 El Niño
Conflicting Changes of Vegetation Greenness Interannual Variability on Half of the Global Vegetated Surface
On the predictability of turbulent fluxes from land: PLUMBER2 MIP experimental description and preliminary results
Slower changes in vegetation phenology than precipitation seasonality in the dry tropics
On the predictability of turbulent fluxes from land: PLUMBER2 MIP experimental description and preliminary results
Evapotranspiration on a greening Earth
A constraint on historic growth in global photosynthesis due to rising CO2
Tree mortality during long-term droughts is lower in structurally complex forest stands
Atmospheric dryness reduces photosynthesis along a large range of soil water deficits
Increasing sensitivity of dryland vegetation greenness to precipitation due to rising atmospheric CO2
Global datasets of leaf photosynthetic capacity for ecological and earth system research
Large‐scale reforestation can increase water yield and reduce drought risk for water‐insecure regions in the <scp>Asia‐Pacific</scp>
Tropical extreme droughts drive long-term increase in atmospheric CO2 growth rate variability
Rising CO<sub>2</sub> and warming reduce global canopy demand for nitrogen
Vegetation clumping modulates global photosynthesis through adjusting canopy light environment
Representativeness of Eddy-Covariance flux footprints for areas surrounding AmeriFlux sites
Global variation in the fraction of leaf nitrogen allocated to photosynthesis
RETRACTED ARTICLE: A constraint on historic growth in global photosynthesis due to increasing CO2
Fine-scale leaf chlorophyll distribution across a deciduous forest through two-step model inversion from Sentinel-2 data
The global distribution of leaf chlorophyll content and seasonal controls on carbon uptake
HAL (Le Centre pour la Communication Scientifique Directe) 2017cited by 0position: middle
Assessing Performance of NDVI and NDVI3g in Monitoring Leaf Unfolding Dates of the Deciduous Broadleaf Forest in Northern China