Nanotechnology– category –
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Nanotechnology
Novel Anti-Cancer Vaccine Targeting Neuroblastoma Achieves Early Success with Peptide Nanoparticles, Paving Way for GPC2-Targeted Immunotherapy
EurekAlert! USA Overview Researchers have achieved early success in developing a new anti-cancer vaccine specifically targeting neuroblastoma. This groundbreaking vaccine is based on self-assembling microscopic particles known as peptide... -
Nanotechnology
Analytical Framework for Twisted 2D Materials Accelerates High-Speed, Energy-Efficient Memristors and Neuromorphic Computing
National Science Review (Oxford Academic) International Overview A new analytical framework has been presented to understand twisted 2D materials. The ability to scale 2D materials down to a single layer holds significant promise for dev... -
Nanotechnology
Monolithic Integration of CNT-Based CFETs with 3D-Stacked Photodiodes Achieved, Realizing Unified Sensing and Computing Systems
ACS Nano USA Overview This research successfully demonstrates the monolithic integration of carbon nanotube (CNT)-based complementary field-effect transistors (CFETs) with 3D-stacked photodiodes. Leveraging CNTs' excellent electrical and... -
Nanotechnology
Chinese Academy of Sciences Achieves Breakthrough in Superplastic Carbon Nanotube Composites: 143 W/mK Thermal Conductivity, 663 MPa Tensile Strength
National Science Review (Oxford Academic) China Overview A recent report by Li et al. from the Chinese Academy of Sciences unveils a long-awaited carbon nanotube (CNT)-reinforced plastic with superior performance. This novel material boa... -
Nanotechnology
Neutron Irradiation Creates Quantum Sensing Boron Vacancies (V B⁻) in Boron-10/Nitrogen-15 Enriched hBN Single Crystals
ResearchGate (citing Applied Physics Letters) International Overview This research demonstrates that negatively charged boron vacancies (V B⁻) are promising quantum defects in hexagonal boron nitride (hBN) for high-spatial-resolution pre... -
Nanotechnology
Nitrogen Content Governs Thermoelectric Performance in TPU/SWCNT Composites, Paving Way for Low-Cost, Sustainable Energy Generation
ResearchGate (PDF) International Overview Investigating sustainable energy generation via the thermoelectric effect, this study explored cost-effective and environmentally friendly polymer-based composites as alternatives to expensive me... -
Nanotechnology
MOF Topology Boosts Asymmetric Catalysis Performance by Up to 158%, Enhancing Enantiomeric Excess 2.7-Fold, Revolutionizing Catalyst Design
Nanoscale Horizons blog (Royal Society of Chemistry) UK Overview This research delves into how the topology of metal-organic frameworks (MOFs) influences the catalytic performance of acyclic amino acids in asymmetric reactions. A specifi... -
Nanotechnology
IMEC, ASML, TSMC Scale 2D Material Transistors to 300mm Wafers, Achieving 50nm Contact Poly Pitch for Fab Integration
IMEC ベルギー Overview IMEC, in partnership with ASML and TSMC, has unveiled a robust, scalable 300mm integrated process for n-type and p-type field-effect transistors utilizing 2D materials. Presented at the 2026 IEEE/JSAP VLSI Technolo... -
Nanotechnology
Cadmium-Free InP Quantum Dots Achieve Over 95% Quantum Yield, Rivaling CdSe-based QDs for Enhanced Lighting and Bioimaging Applications
ResearchGate (citing European Journal of Inorganic Chemistry) International Overview The synthesis and enhanced optical properties of cadmium-free (Cd-free) multinary quantum dots (QDs) have been reported, demonstrating that InP QDs hold... -
Nanotechnology
High-Performance Cadmium-Free InP/ZnSe/ZnS Quantum Dots Achieve 78% Near-IR PLQY, Promising for Bioimaging and Optoelectronics
Journal of the American Chemical Society USA Overview This research reports the successful synthesis of wurtzite InP/ZnSe/ZnS core/shell semiconductor quantum dots exhibiting bright near-infrared (NIR) emission. These high-performance, c...