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News


smallcaps.com.au > article > adisyn-extends-graphene-patent-protection-to-non-metallic-surfaces

Adisyn Extends Graphene Patent Protection to Non-Metallic Surfaces

13+ hour, 44+ min ago   (390+ words) Adisyn (ASX: AI1) has secured allowance from the US Patent and Trademark Office for a third patent that extends its graphene deposition protection to non-metallic surfaces. Its claims include a low-temperature process that keeps the underlying surface below 400°C, allowing graphene…...


marketscreener.com > news > adisyn-secures-us-patent-protecting-method-for-depositing-graphene-directly-onto-non-metallic-surfac-ce785bdcd980f02d

Adisyn Secures US Patent Protecting Method for Depositing Graphene Directly onto Non-Metallic Surfaces

18+ hour, 5+ min ago   (40+ words) marketscreener.com IT Services & Consulting Adisyn Secures US Patent Protecting Method for Depositing Graphene Directly onto Non-Metallic Surfaces Published on 09/13/2026 at 08:14 pm EDT...


scitechdaily.com > scientists-turn-common-plastic-waste-into-fuel-using-heated-salts

Scientists Turn Common Plastic Waste Into Fuel Using Heated Salts

1+ day, 2+ hour ago   (857+ words) Common plastic waste could become fuel using heated salts instead of extreme temperatures. Plastic bags, cutting boards, and many other everyday products are made from a plastic that is notoriously difficult to reuse once it becomes waste. Researchers at Oak…...


dexerto.com > entertainment > scientists-discover-a-new-type-of-ice-that-forms-at-more-than-3600f-3408662

Scientists discover a new type of ice that forms at more than 3,600??F

1+ day, 4+ hour ago   (348+ words) Scientists have discovered a new form of ice that exists at temperatures above 3,600 degrees Fahrenheit. The discovery was made by a team led by physicist Alexis Forestier from the French Alternative Energies and Atomic Energy Commission, who created it by…...


intelligentliving.co > corn-waste-bio-based-flame-retardant

Corn Waste Yields Bio-Based Flame Retardant That Matches Chemicals

1+ day, 16+ hour ago   (720+ words) Every year, roughly 2.3 million tons of flame retardants are applied worldwide, and demand keeps climbing, especially in construction. Most are made from petroleum, mined minerals, or halogenated chemistry that works well in fires but lingers in the environment and raises…...


bioengineer.org > tiny-doses-of-biochar-supercharge-biogas-from-slaughterhouse-wastewater

Tiny Doses of Biochar Supercharge Biogas from Slaughterhouse Wastewater

1+ day, 11+ hour ago   (718+ words) Slaughterhouses are among the most difficult facilities to keep environmentally clean. Every carcass processed leaves behind a wastewater stream loaded with blood proteins, fats, oils and grease, suspended solids, and an enormous chemical oxygen demand that can overwhelm conventional treatment…...


bioengineer.org > corn-starch-electrolyte-boosted-tenfold-with-plasticizer-and-graphene-oxide

Corn Starch Electrolyte Boosted Tenfold with Plasticizer and Graphene Oxide

1+ day, 11+ hour ago   (80+ words) A team of researchers at Quaid-i-Azam University in Islamabad has shown that an ordinary kitchen staple, corn starch, can be transformed into a surprisingly capable solid electrolyte for lithium-ion batteries when it is combined with the right additives. In work…...


eurekalert.org > news-releases > 1132562

Microbes hold the key: unlocking sustainable carbon storage in farmland with biochar

2+ mon, 4+ week ago   (722+ words) Biochar, a charcoal-like substance made from biomass, offers a promising pathway for storing carbon in agricultural soils, helping to offset climate change. Despite its potential, the precise mechanisms, particularly the role of diverse microbial communities, influencing its long-term effectiveness remain…...


bioengineer.org > spent-coffee-grounds-turned-into-carbon-dots-that-boost-antibacterial-food-packaging

Spent Coffee Grounds Turned Into Carbon Dots That Boost Antibacterial Food

1+ day, 14+ hour ago   (524+ words) Every year, the world brews billions of cups of coffee, and almost all of the spent grounds end up in landfills, where they slowly decompose and release methane....