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BIOENGINEER.ORG - Bioengineering

  • 3,565articles · 30d
  • 1+ hour agolatest article
  • Aug 14, 2026earliest in window
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News

BIOENGINEER.ORG
bioengineer.org > ai-predicts-ev-charging-demand-with-97-9-accuracy-from-real-grid-data

AI Predicts EV Charging Demand With 97.9% Accuracy From Real Grid Data

3+ hour, 46+ min ago   (708+ words) Electric vehicles are quietly rewriting the rules of the power grid, and nowhere is that transformation more visible than along the highways that stitch countries together....

BIOENGINEER.ORG
bioengineer.org > strained-silicon-quantum-dots-reveal-new-design-rules-for-intermediate-band-solar-cells

Strained Silicon Quantum Dots Reveal New Design Rules for Intermediate-Band

10+ hour, 6+ min ago   (625+ words) Silicon has long dominated the solar industry, but its fundamental physics imposes hard limits on how much sunlight a single-junction cell can convert into electricity. Photons with less energy than silicon’s band gap simply pass through the material, while photons…...

BIOENGINEER.ORG
bioengineer.org > new-noise-robust-ai-method-tackles-imbalanced-data-in-car-transmission-testing

New Noise-Robust AI Method Tackles Imbalanced Data in Car Transmission

12+ hour, 52+ min ago   (55+ words) Every car transmission that rolls off a production line must prove it is quiet, smooth, and safe before it reaches a customer. At the end of the assembly process, engineers rely on Noise, Vibration and Harshness testing, known as NVH…...

BIOENGINEER.ORG
bioengineer.org > linseed-oil-nano-coating-and-seasonal-refrigerant-swaps-boost-solar-panel-efficiency

Linseed Oil Nano-Coating and Seasonal Refrigerant Swaps Boost Solar Panel

13+ hour, 43+ min ago   (498+ words) Solar panels have a paradox built into their design: the more sunlight they receive, the hotter they get, and the hotter they get, the worse they perform....

BIOENGINEER.ORG
bioengineer.org > chloride-rich-electrolyte-powers-a-high-voltage-lithium-sulfur-battery-breakthrough

Chloride-Rich Electrolyte Powers a High-Voltage Lithium–Sulfur Battery

16+ hour, 46+ min ago   (564+ words) Rechargeable lithium–sulfur batteries have long been heralded as one of the most promising routes beyond the limits of conventional lithium-ion technology. Sulfur is abundant, inexpensive and capable in principle of storing enormous quantities of energy per unit mass....

BIOENGINEER.ORG
bioengineer.org > halogen-chemistry-lifts-sulfur-batteries-to-a-higher-voltage

Halogen Chemistry Lifts Sulfur Batteries to a Higher Voltage

18+ hour, 14+ min ago   (623+ words) Lithium-sulfur batteries have spent decades promising an energy-storage revolution that never quite arrived. On paper, the chemistry is extraordinary: sulfur is abundant, cheap, and capable in principle of storing several times more energy per kilogram than the intercalation cathodes used…...

BIOENGINEER.ORG
bioengineer.org > carbon-nanotube-network-boosts-vanadium-based-composite-for-supercapacitors

Carbon nanotube network boosts vanadium-based composite for supercapacitors

2+ day, 14+ hour ago   (676+ words) Researchers in India have unveiled a new ternary nanocomposite electrode material that pushes the performance limits of supercapacitors, the fast-charging energy storage devices increasingly seen as companions to batteries in electric vehicles, renewable energy systems and portable electronics....

BIOENGINEER.ORG
bioengineer.org > lanthanum-oxysulfide-efficiently-tames-polysulfides-in-li-s-and-na-s-batteries

Lanthanum oxysulfide efficiently tames polysulfides in Li-S and Na-S

5+ day, 6+ hour ago   (743+ words) Lithium-sulfur and sodium-sulfur batteries have long promised a revolution in energy storage, offering theoretical energy densities far beyond today’s lithium-ion technology at a fraction of the cost....

BIOENGINEER.ORG
bioengineer.org > zwitterionic-gel-electrolytes-enable-fast-charging-lithium-ion-batteries

Zwitterionic gel electrolytes enable fast-charging lithium-ion batteries

6+ day, 9+ hour ago   (709+ words) In the race to build lithium-ion batteries that can charge in minutes rather than hours, the biggest obstacles are no longer the electrodes but the electrolyte and the hidden chemical interfaces inside the cell....

BIOENGINEER.ORG
bioengineer.org > waste-palm-seed-extract-yields-powerful-supercapacitor-electrode-material

Waste Palm Seed Extract Yields Powerful Supercapacitor Electrode Material

1+ week, 2+ day ago   (783+ words) In a finding that could reshape how the world builds its next generation of supercapacitors, a team of Nigerian researchers has turned an underused agricultural by-product, the seed of the raffia palm Raphia hookeri, into the chemical engine of a…...