Triplet excited states of organic molecules play essential roles in photocatalysis, photodynamic therapy, photon upconversion, and organic optoelectronic applications. However, achieving efficient triplet generation in purely organic molecules remains challenging because of their intrinsically weak spin–orbit coupling. Spin–orbit charge-transfer intersystem crossing (SOCT-ISC) has emerged as a pro
Medical ResearchCatalysisChemical Engineering#Chinese Academy of Sciences#Research News#Catalysis#Chemical Engineering#medical research#clinical research
A research team from the Institute of Metal Research (IMR) of the Chinese Academy of Sciences, together with collaborators, has revealed a new mechanism by which spatially ordered heteroatoms induce bulk polarization in nonpolar semiconductor photocatalysts, offering a promising pathway to overcoming the long-standing challenge of efficient charge separation for solar water splitting. Their findin
CatalysisChemical Engineering#Chinese Academy of Sciences#Research News#Catalysis#Chemical Engineering#Green Energy
Iron is essential for plants, but in alkaline soils, ferrous iron (Fe 2+ ) becomes poorly soluble and difficult for plant roots to absorb. Applying iron directly to leaves can bypass this problem, but foliar iron treatments face other issues: Fe 2+ is easily oxidized, droplets do not spread well on the waxy surface of leaves, and rain washes away much of the treatment. In a study published in Carb
Biodiversity#Chinese Academy of Sciences#Research News#biodiversity
Large-scale recording of multiple dynamic behaviors and quantitative neurochemical concentrations with high spatiotemporal resolution is critical to understand complex brain functions. Two-photon microscopy (TPM) is the excellent choice for brain function imaging because of its high resolution, deep tissue penetration, and favorable biosafety. However, current TPM is limited by a restricted field-
Health#Chinese Academy of Sciences#Research News#Health
Researchers from the Xishuangbanna Tropical Botanical Garden (XTBG) of the Chinese Academy of Sciences have discovered two new species of Begonia in the karst region of Guangxi, China. The two species, Begonia renkunii and Begonia tianyangensis , were identified from specimens collected during field surveys in Baise City and have been described in the journal Phytotaxa . The researchers collected
Biodiversity#Chinese Academy of Sciences#Research News#biodiversity
Understanding how domestication reshapes brain structure and function remains a fundamental question in evolutionary biology. The hippocampus is a key brain region involved in memory and stress regulation, and it has been thought to undergo "simplification" during domestication. However, the cellular mechanisms underlying these changes remain poorly understood. In a study published in PNAS on Sept
Life SciencesEvolution#Chinese Academy of Sciences#Research News#Evolution#genomics#biology
Cilia and flagella are antenna‑like organelles that project from the cell surface and are widely distributed from unicellular eukaryotes to mammals. Motile cilia must beat in a coordinated manner to generate productive fluid flow and drive cell motility, which is essential for processes such as sperm propulsion, mucociliary clearance in the airways, and cerebrospinal fluid circulation. Now, a rese
Medical Research#Chinese Academy of Sciences#Research News#medical research#clinical research
Noninvasive monitoring of cortisol is important for characterizing circadian regulation and physiological responses to exercise and stress. Sweat has provided an alternative to laboratory testing, but existing wearable cortisol platforms often rely on complex microfluidic collectors, electronic readout modules, or dedicated instruments. It is needed to integrate rapid sweat acquisition, selective
Health#Chinese Academy of Sciences#Research News#Health
Establishing a quantitative structure-property relationship is essential for understanding and optimizing the performance of elastomers. In a new study published in Physical Review Letters , researchers have developed a theoretical framework that quantitatively connects the macroscopic mechanical response of unentangled elastomers to the mechanics and conformations of individual polymer strands. T
Nanotechnology#Chinese Academy of Sciences#Research News#Nanotechnology
According to a study by researchers from the Institute of Applied Ecology (IAE) of the Chinese Academy of Sciences (CAS) and their domestic and international collaborators, forest recovery on land affected by fires, harvesting, and other disturbances has been the main contributor to China's forest carbon sink over the past three decades. The study was published in Nature Geoscience on August 17. A
Carbon Neutrality#Chinese Academy of Sciences#Research News#Carbon Neutrality