Multi-sensor geospatial modelling to address complex mangrove dieback: misattribution of chemical stressors versus physical impact. [PDF]
Farrugia J.
europepmc +1 more source
Rainfall Shapes the Diversity of Soil Nitrogen‐Fixing Microorganisms Worldwide
This study reveals the distinctive pattern and mechanism of rainfall driving the global biodiversity and biogeography of soil potential N‐fixing microorganisms, and constructs the theoretical framework. The results guide us on how to maintain ecosystem productivity under future climate changes (e.g., whether a specific region needs more N fertilizers ...
Bin Hua +18 more
wiley +1 more source
Transforming global water cycle observations via synergistic AI and remote sensing. [PDF]
Yao Z +10 more
europepmc +1 more source
Bidirectional Soft Catalysts for Improved Power Performance of Li‐S Batteries
A soft polymer‐metal catalyst is integrated into the binder to create a catalytically active microenvironment that accelerates bidirectional sulfur redox kinetics in lithium‐sulfur batteries. A model polyvinyl alcohol‐Cu catalyst enables high areal capacities at demanding current densities and stable cycling in pouch‐cell prototypes at 0.5 C, achieving
Maleesha M. Nishshanke +7 more
wiley +1 more source
A global dataset of reservoir in-situ water levels for hydrological and remote sensing applications. [PDF]
Zhang M +5 more
europepmc +1 more source
Enviromics and Abiotic Enviromics: Enhancing Stress Biology and Plant Resilience Breeding
Environmental stressors are captured through high‐throughput envirotyping and integrated into an enviromic framework with genomic, transcriptomic, phenomic, and environmental data. AI/ML models enable prediction and guide marker‐assisted selection, genomic selection, genome editing, and gene pyramiding toward improved abiotic stress tolerance, yield ...
Guangchao Sun +6 more
wiley +1 more source
Groundwater depletion contributes to an increase in global carbon emissions. [PDF]
Sun T +9 more
europepmc +1 more source
A Multiscale Mechanistic Framework for Polydopamine Dyeing in Ultrablack Wool Textiles
Ultrablack photonic textiles are enabled through polydopamine (PDA) dyeing, which is governed by the interplay of PDA chemistry, wool surface topology and chemistry, and hierarchical fiber–yarn–fabric architecture. Fabric architecture emerges as a primary and previously underappreciated design lever for wide‐angle optical performance.
Hansadi Jayamaha +4 more
wiley +1 more source

