Researchers discovered a new organic molecule that can boost the efficiency of non-doped blue OLEDs. By manipulating the exciton mechanism, they created a record-breaking device with an external quantum efficiency of 20.3%, outperforming existing emitters.
The study found that complex terrain, particularly orographic gravity wave drag, significantly affects the location and intensity of extreme precipitation. Without this effect, the low-level mesoscale vortex moves westward, leading to decreased rainfall intensity and a northwestward shift of the rainfall center.
A research team found that sweet osmanthus flowers use their intense fragrance to repel honeybees and other pollen feeders, while attracting tiny pollinators like thrips. This 'push–pull' strategy helps the plant filter out unwanted visitors and maintain reproductive success.
A comprehensive phylogenomic tree of ciliates has been reconstructed, providing a new framework for the phylum Ciliophora. The study establishes three main lineages and a divergence timeline linking key splits to major Earth history events. This robust phylogenetic framework enables precise tracing of key evolutionary innovations.
The journal focuses on advancing scientific understanding and expanding engineering horizons through rigorous peer-reviewed, open-access research. ASI aims to be the preeminent hub for pioneering next-generation scientific tools and fostering global collaboration.
Recent scientific review highlights Ga-LMs' natural fluidity, high electrical conductivity, and biocompatibility, making them suitable for wearable health monitoring systems, soft robots, and implantable medical devices. Advanced patterning techniques enable precise fabrication of Ga-LM-based circuits for high-performance HMIs.
Researchers have achieved first-ever in-situ polarization control in high-field infrared spectroscopy, overcoming a decades-old technical bottleneck. The newly developed collimated magneto-infrared spectroscopy system enables continuous modulation of polarization states under high magnetic fields and cryogenic temperatures.
Chinese researchers develop novel post-dual OPA technique to amplify weak SFG signals, enabling detection of molecular signals at surfaces. The breakthrough opens possibilities for studying transient species in chemical reactions and other systems where surface molecular structure determines function.
Researchers integrated transient optical spectroscopy with ultrafast electron microscopy to capture both electronic and structural dynamics simultaneously. This enables the study of heterogeneous materials, phase transitions, and light-driven functional responses with implications for solar cells, quantum computing, and next-generation...
The study reveals that bonding heterogeneity, rather than geometric similarity, governs relaxation dynamics in glasses. By incorporating electronic structure and chemical interactions, researchers establish a new physical framework for understanding structure-relaxation coupling in glasses.
Researchers reveal that coronaviruses hijack specific cellular protein to build large compartments for viral assembly, leading to reduced viral production in cells lacking the HGS protein. The discovery opens new avenues for antiviral therapy by targeting the interaction between HGS and viral proteins.
Researchers developed a new eDNA sampling membrane that captures DNA fragments with high efficiency, detecting multiple tropical coral reef fish species. The membrane, coated with molybdenum disulfide nanosheets, enables preferential interactions with DNA bases, improving the capture of trace eDNA from large volumes of seawater.
Researchers have developed bioengineered extracellular vesicles with enhanced therapeutic functionality, which can precisely target injured cardiac tissue and deliver therapeutic cargos. These bioengineered EVs have shown promising results in preclinical models of myocardial infarction, heart failure, and pulmonary arterial hypertension.
Researchers have developed an 'ECI patch' that reads brain signals and controls cars with 93.5% accuracy. The patch, powered by ultra-thin sheets called MXene, detects fatigue and mental states without causing skin irritation.
A research team has pioneered a novel optical neural network that physically 'learns' through associative light exposure, eliminating the need for traditional computing algorithms. The system successfully recognized letters and demonstrated capability in handwritten digit recognition.
Microbial community shifts from biotic to abiotic drivers under drought, with legacy effects persisting upon rehydration. Soil properties dominate recovery stages, highlighting dual focus on biology and abiotic factors for ecosystem resilience.
A novel soft biosensor with printable responsive hydrogel interfaces was developed for precise detection and differentiation of blood circulation complications in postoperative free flaps. The biosensor achieved high adhesion and high-fidelity signal acquisition while exhibiting low adhesion after monitoring to avoid wound damage.
Researchers developed a bioinspired Janus air electrode with a fish-scale and waterspider-leg structure, enabling rapid substance transport and improving catalytic site utilization. The asymmetric architecture significantly enhances zinc-air battery performance, achieving high power density and specific capacity.
Researchers developed a light-responsive nanoassembly that enables precise and controllable drug delivery inside tumor cells. The strategy achieves strong tumor suppression while effectively inhibiting tumor spread, without causing noticeable systemic toxicity.
A new study finds periphyton, a thin microbial community at the soil-water interface, captures 6-24% of applied fertilizer N. Periphyton stores approximately 0.8 teragrams of nitrogen annually, closing the paddy-field nitrogen budget gap.
Researchers developed a novel phosphorus-carbon-bridged cyclization strategy, yielding high-performance blue emitters with exceptional color purity and electroluminescence efficiency. The synergistic heavy-atom effect of phosphorus and sulfur significantly enhances reverse intersystem crossing rates, leading to ultra-high efficiency an...
A comprehensive review argues that single-factor interventions in Alzheimer's disease are insufficient due to the complex interplay of multiple factors. The authors call for an integrated therapeutic approach, including multi-target therapies and precision medicine based on early biomarkers.
Developing high-performance Ni-rich cathode materials is crucial for achieving single-cell energy densities exceeding 400 Wh kg‑. A research team synthesized quinary full-concentration-gradient cathodes using an in-situ co-precipitation strategy, featuring a Mn-rich, Ni-poor surface and radially aligned primary particles.
Researchers found that microbes can use mercury sulfide nanominerals as an energy source, releasing volatile elemental mercury into the air. The study estimates that this process could release hundreds of tons of mercury per year, comparable to cement production.
Researchers found that widespread flooding in the Middle Yangtze Valley led to the decline of the Shijiahe culture around 4,200 years ago. The study used stalagmite analysis to reconstruct rainfall patterns and show that high-rainfall intervals were associated with increased flooding and a significant decline in population.
An international team uncovered a 7,700-year-old 'north-south corridor' of human interaction between Early Neolithic populations in Siberia and northern China. Genetic analysis revealed a distinct genetic signature linked to Lake Baikal populations, challenging previous views on trans-Eurasian contact.
A novel, self-regenerating 'bacteria-mineral' biohybrid system was developed to utilize light like a solar cell for uranium pollution purification. The system enhances the purification efficiency of uranium pollution through the use of metabolic activity of bacteria to grow ferrous sulfide nanoparticles.
Researchers identified OsMADS18 as a key regulator of grain chalkiness, enhancing the trait with loss-of-function mutations. OsbZIP60 was found to interact with OsMADS18, positively regulating chalkiness-related genes. The OsMADS18-OsbZIP60 module also influences grain weight and starch content under high-temperature conditions.
Researchers explore piezoelectric electrospun fibers that generate crucial electrical signals for tissue engineering and biomedical applications. These "smart" scaffolds have high flexibility, biomimetic structure, and tunable morphology, offering potential for enhanced tissue repair.
The development of spatial transcriptomics has advanced gene expression understanding, but selecting suitable analytical approaches is challenging. A database curated SpatialToolDB addresses this by classifying over 600 ST analytical tools and providing access to processed datasets.
A new rice gene, GSN7, has been discovered that can simultaneously increase grain yield and improve quality. The study found that precise manipulation of this gene can overcome the long-standing trade-off between yield and quality in rice breeding.
Researchers review schizophrenia mechanisms, including neurotransmitter dysregulation and immune dysfunction, to develop next-generation therapies. Promising treatments include TAAR1 agonists, muscarinic modulators, NMDA receptor enhancers, and probiotics targeting the gut-brain axis.
A novel multi-agent AI framework, eNRRCrew, has been developed to accelerate the discovery of sustainable catalysts for green ammonia synthesis. By analyzing a comprehensive database of scientific papers, the framework predicts a catalyst's performance and provides rational design principles.
A study reveals how a dual modification on histone H3.3 recruits silencing complexes to establish heterochromatin, crucial for gene silencing and X-chromosome inactivation. The 'H3.3-CBX7-KAP1' pathway is essential for building the repressive heterochromatin mark H3K9me3.
Quantized soliton pumping is observed in high-dimensional topological systems, governed by distinct-order Chern invariants. The study reveals integer- and fractional-quantized pumping behaviors and trapped regimes at strong nonlinearity.
Scientists at Shanxi University successfully demonstrate controllable deterministic continuous-variable quantum teleportation of up to 5 sideband qumodes simultaneously within a 24 MHz frequency bandwidth. The number of teleported qumodes can be controlled by adjusting the phases of classical channels, with fidelity above 70% achieved.
Researchers have developed a compact high-temperature superconducting magnetoplasmadynamic thruster, reducing power consumption by 96% and weight by 73%, enabling more efficient space propulsion. The thruster achieved an ultra-high specific impulse of 3,265 seconds, significantly reducing spacecraft fuel requirements and launch costs.
A study analyzing outcomes from 795 patients with severe aplastic anemia found that donor age significantly impacted long-term survival and graft success. Younger donors experienced consistently better outcomes, while older donors were associated with worse results.
Researchers investigate fractional quantum Hall effect in twisted MoTe2, revealing spontaneous ferromagnetic transitions and exotic correlated phases. The study identifies characteristic spectroscopic signatures of these phases, providing a unified framework for interpreting existing measurements.
A study reveals disulfiram inhibits tumor growth in liver cancer by modifying RNA and activating c-FOS, which suppresses lipid metabolism and angiogenesis. High expression of TRMT10C and PCSK9 is associated with poor prognosis, while high c-FOS is linked to better survival.
Researchers developed a supramolecular photocatalyst with hydrogen bonds that enhance exciton dissociation and charge migration, leading to improved oxygen evolution rates. The system boosts internal electric fields, driving faster charge migration and increased holes on the catalyst surface.
A new theory suggests that water accumulated in the mantle caused an overturn, supplying materials for continent formation and strengthening the geodynamo. This event accelerated core cooling, correlating with high paleointensities in Archean rocks.
A recent study questions AI model Centaur's ability to simulate human cognition, suggesting it relies on statistical patterns rather than genuine understanding.
A new study proposes a two-component self-interacting dark matter model that naturally reproduces observational results for dwarf galaxies and strong gravitational lensing. The model predicts mass segregation, where heavier particles sink towards galaxy centers and lighter particles diffuse outward.
Researchers control light emission from individual molecules, enabling future technologies like quantum computing and ultra-dense displays. The team's roadmap includes achieving stable, room-temperature single-photon emission by 2026 and integrating multiple devices for small-scale quantum information processing.
A team from Donghua University has developed a new molecular design that improves the performance of photothermally healable elastomers. The resulting material, PIB5Cu, achieves all-round upgrades in toughness, tensile strength, photothermal conversion efficiency and healing efficiency.
New diagnostic methods aim to detect RNA viruses with high sensitivity and specificity, overcoming the challenge of rapid evolutionary dynamics. The techniques include mutation-tolerant screening and precise mutation discrimination.
Researchers achieved hybrid spin-orbit coupling-driven optical spin Hall effect in organic microcavities, offering a new approach for polarization-preserving components and spin-photonic functionality. The system provides more than one 'topological' spin texture within a single device, accessible by adjusting momentum.
Protein Foundation Models (pFMs) leverage vast amounts of sequence and structural data to predict protein structures and functions, enabling novel protein design and analysis. The models have evolved into several mature technical approaches, demonstrating versatility in basic biological research, protein discovery, and biomedical appli...
Researchers have developed a new approach to improve rice's resistance to pathogens by combining basal immunity with effector-triggered immunity. The hybrid rice plants show full resistance to certain strains and improved resistance to others, while alleviating growth defects.