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New reactor produces clean energy and carbon nanotubes from natural gas Scientists from the University of Cambridge have developed a new reactor that converts natural gas (a common energy source primarily composed of methane) into two highly valuable resources: clean hydr...

🧪Such good work being done, to help us all survive.
phys.org/news/2025-12... #methane #nanotubes #carbon

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Harnessing carbon nanotubes in Moringa oleifera micropropagation for enhanced morphological traits, phytochemicals, and phytohormones production Moringa oleifera, a highly valued medicinal plant, rich in bioactive compounds, has low regeneration efficiency that limits its large-scale production. This study evaluated the potential of CNTs to enhance in-vitro micropropagation...

Harnessing carbon #nanotubes in #Moringa oleifera #micropropagation to enhance morphological traits, #phytochemical content, and #phytohormone production.
To read this new article in JHSB, visit:

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Schematic illustration of the HNT composites preparation.

Schematic illustration of the HNT composites preparation.

This study systematically investigated the dielectric, thermal, and mechanical performance of halloysite #Nanotubes (HNT)-doped PU #Nanocomposites, highlighting their potential as advanced #ElectroinsulatingMaterials.
Nanotechnology Reviews #OpenAccess: doi.org/10.1515/ntre...

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Methane to #Nanotubes + #Hydrogen

#ClimateAction

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What If Your Car Paid For Its Own Fuel By Manufacturing Battery Materials? | Minds ...attery Materials?.

www.minds.com/newsfeed/184...

What If Your Car Paid For Its Own Fuel By Manufacturing Battery Materials?

#Energy #Transportation #Carbon #Nanotubes

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Carbon nanotubes could power a new generation of flexible solar panels Perovskite solar cells can be made not only more robust but also more efficient, scalable and cheaper to manufacture by replacing the indium tin oxide (ITO) in the device, according to research led by...

#Carbon #nanotubes could power a new generation of flexible #solarpanels

techxplore.com/news/2025-12...

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Top left: Slbo in the outer border cell non- cell autonomously regulates JNK signaling to maintain the proper apical–basal polarity of the migrating border cell cluster. The proper polarity of the border cell cluster facilitates the formation of the polar cell protrusion at stage 13. Bottom left: After formation of the polar cell protrusion, JNK signaling in the polar cell regulates the movement of lysosomal components towards the oocyte through the nanotube. is deposited at the tip of the protrusion which aids to open the vitelline envelope for sperm entry during fertilization. Right: High-resolution 2D STED imaging (30 nm XY resolution) of a Stage 13 Drosophila egg chamber reveals lysosomal dynamics within a polar-cell nanotube. The polar-cell protrusion is labelled with Fas III (Magenta), nuclei are stained with DAPI (Blue), and lysosomal compartments are visualized using LAMP1-eGFP (Green), which are enriched at the apical side of the polar cell and are also present within the protrusion, indicating active trafficking through the nanotube. Images were acquired with a 60× objective on an ABBERIOR 3D-STED Facility Line microscope.

Top left: Slbo in the outer border cell non- cell autonomously regulates JNK signaling to maintain the proper apical–basal polarity of the migrating border cell cluster. The proper polarity of the border cell cluster facilitates the formation of the polar cell protrusion at stage 13. Bottom left: After formation of the polar cell protrusion, JNK signaling in the polar cell regulates the movement of lysosomal components towards the oocyte through the nanotube. is deposited at the tip of the protrusion which aids to open the vitelline envelope for sperm entry during fertilization. Right: High-resolution 2D STED imaging (30 nm XY resolution) of a Stage 13 Drosophila egg chamber reveals lysosomal dynamics within a polar-cell nanotube. The polar-cell protrusion is labelled with Fas III (Magenta), nuclei are stained with DAPI (Blue), and lysosomal compartments are visualized using LAMP1-eGFP (Green), which are enriched at the apical side of the polar cell and are also present within the protrusion, indicating active trafficking through the nanotube. Images were acquired with a 60× objective on an ABBERIOR 3D-STED Facility Line microscope.

Membrane #nanotubes are cytoskeletal structures that facilitate intercellular communication. This study shows that polar cell-derived #microtubule nanotubes play a role in #Drosophila #fertilization, creating a channel in the eggshell that facilitates #sperm entry @plosbiology.org 🧪 plos.io/3XwOlvS

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Top left: Slbo in the outer border cell non- cell autonomously regulates JNK signaling to maintain the proper apical–basal polarity of the migrating border cell cluster. The proper polarity of the border cell cluster facilitates the formation of the polar cell protrusion at stage 13. Bottom left: After formation of the polar cell protrusion, JNK signaling in the polar cell regulates the movement of lysosomal components towards the oocyte through the nanotube. is deposited at the tip of the protrusion which aids to open the vitelline envelope for sperm entry during fertilization. Right: High-resolution 2D STED imaging (30 nm XY resolution) of a Stage 13 Drosophila egg chamber reveals lysosomal dynamics within a polar-cell nanotube. The polar-cell protrusion is labelled with Fas III (Magenta), nuclei are stained with DAPI (Blue), and lysosomal compartments are visualized using LAMP1-eGFP (Green), which are enriched at the apical side of the polar cell and are also present within the protrusion, indicating active trafficking through the nanotube. Images were acquired with a 60× objective on an ABBERIOR 3D-STED Facility Line microscope.

Top left: Slbo in the outer border cell non- cell autonomously regulates JNK signaling to maintain the proper apical–basal polarity of the migrating border cell cluster. The proper polarity of the border cell cluster facilitates the formation of the polar cell protrusion at stage 13. Bottom left: After formation of the polar cell protrusion, JNK signaling in the polar cell regulates the movement of lysosomal components towards the oocyte through the nanotube. is deposited at the tip of the protrusion which aids to open the vitelline envelope for sperm entry during fertilization. Right: High-resolution 2D STED imaging (30 nm XY resolution) of a Stage 13 Drosophila egg chamber reveals lysosomal dynamics within a polar-cell nanotube. The polar-cell protrusion is labelled with Fas III (Magenta), nuclei are stained with DAPI (Blue), and lysosomal compartments are visualized using LAMP1-eGFP (Green), which are enriched at the apical side of the polar cell and are also present within the protrusion, indicating active trafficking through the nanotube. Images were acquired with a 60× objective on an ABBERIOR 3D-STED Facility Line microscope.

Membrane #nanotubes are cytoskeletal structures that facilitate intercellular communication. This study shows that polar cell-derived #microtubule nanotubes play a role in #Drosophila #fertilization, creating a channel in the eggshell that facilitates #sperm entry @plosbiology.org 🧪 plos.io/3XwOlvS

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Top left: Slbo in the outer border cell non- cell autonomously regulates JNK signaling to maintain the proper apical–basal polarity of the migrating border cell cluster. The proper polarity of the border cell cluster facilitates the formation of the polar cell protrusion at stage 13. Bottom left: After formation of the polar cell protrusion, JNK signaling in the polar cell regulates the movement of lysosomal components towards the oocyte through the nanotube. is deposited at the tip of the protrusion which aids to open the vitelline envelope for sperm entry during fertilization. Right: High-resolution 2D STED imaging (30 nm XY resolution) of a Stage 13 Drosophila egg chamber reveals lysosomal dynamics within a polar-cell nanotube. The polar-cell protrusion is labelled with Fas III (Magenta), nuclei are stained with DAPI (Blue), and lysosomal compartments are visualized using LAMP1-eGFP (Green), which are enriched at the apical side of the polar cell and are also present within the protrusion, indicating active trafficking through the nanotube. Images were acquired with a 60× objective on an ABBERIOR 3D-STED Facility Line microscope.

Top left: Slbo in the outer border cell non- cell autonomously regulates JNK signaling to maintain the proper apical–basal polarity of the migrating border cell cluster. The proper polarity of the border cell cluster facilitates the formation of the polar cell protrusion at stage 13. Bottom left: After formation of the polar cell protrusion, JNK signaling in the polar cell regulates the movement of lysosomal components towards the oocyte through the nanotube. is deposited at the tip of the protrusion which aids to open the vitelline envelope for sperm entry during fertilization. Right: High-resolution 2D STED imaging (30 nm XY resolution) of a Stage 13 Drosophila egg chamber reveals lysosomal dynamics within a polar-cell nanotube. The polar-cell protrusion is labelled with Fas III (Magenta), nuclei are stained with DAPI (Blue), and lysosomal compartments are visualized using LAMP1-eGFP (Green), which are enriched at the apical side of the polar cell and are also present within the protrusion, indicating active trafficking through the nanotube. Images were acquired with a 60× objective on an ABBERIOR 3D-STED Facility Line microscope.

Membrane #nanotubes are cytoskeletal structures that facilitate intercellular communication. This study shows that polar cell-derived #microtubule nanotubes play a role in #Drosophila #fertilization, creating a channel in the eggshell that facilitates #sperm entry @plosbiology.org 🧪 plos.io/3XwOlvS

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L'ingrédient-clé recherché depuis 20 ans pour produire des nanotubes supraconducteurs était sous nos yeux depuis le début Dans un laboratoire, un pot de sel banal a permis de résoudre un casse-tête que les physiciens poursuivaient depuis vingt ans. Une équipe internationale de chercheurs vient de créer pour la première f...

L’ingrédient-clé recherché depuis 20 ans pour produire des #nanotubes #supraconducteurs était sous nos yeux depuis le début

Dans un laboratoire, un #pot de #sel banal a permis de résoudre un casse-tête que les #physiciens poursuivaient depuis vingt ans.

media24.fr/2025/11/11/l...

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Intercellular communication in the brain through a dendritic nanotubular network Intercellular nanotubular networks mediate material exchange, but their existence in neurons remains to be explored in detail. We identified long, thin dendritic filopodia forming direct dendrite–dend...

🧠🧪 #Neurons can communicate via a hidden network of #nanotubes. Chang et al. (2025) show dendritic nanotubes as #actin-based conduits transferring Ca²⁺ + cargo, rising before plaque deposition in 🐁 #cortex. This overlooked pathway may expand views of neuronal communication beyond #synapses.

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Our team first posters at #SolTech #Conference in #Bayreuth: Sahar presenting #Photocatalytic #water #purification using #hybrid systems of Phenyl-doped g-C3N4 with functionalized #Carbon #nanotubes and Morgan presenting Pt-CN loaded PNIPAM #hydrogel thin films for #hydrogen #evolution system

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3D-Printed Carbon Nanotube Sensors Enable Stretchable Health Monitoring

3D-Printed Carbon Nanotube Sensors Enable Stretchable Health Monitoring

Seoul Natl. Univ. of Sci. & Tech 3D‑printed a 0.9% CNT nanocomposite that stretches to 223% length with conductivity of 1.64 × 10⁻³ S/m, enabling an insole for pressure mapping. getnews.me/3d-printed-carbon-nanotu... #3dprinting #nanotubes

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I am delighted to share that my image has been awarded 𝗳𝗶𝗿𝘀𝘁 𝗽𝗹𝗮𝗰𝗲 in the 𝗝𝗠𝗦𝗖 𝗣𝗵𝗼𝘁𝗼 𝗰𝗼𝗻𝘁𝗲𝘀𝘁 𝟮𝟬𝟮𝟱 🏅 📷

Tunneling #nanotubes (TNT) in amoeba

@pstallforth.bsky.social
@jsmc-info.bsky.social
@leibniz-hki.de @microverse.bsky.social

#microscopy #scicomm #wisskomm #research #phd #outreach #science

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Carbon Nanotube Carbon nanotubes (CNTs) are cylindrical structures made entirely of carbon atoms, essentially a rolled-up sheet of graphene with diameters in the nanometer range. These fascinating nanomaterials posse...

#Carbon #Nanotubes (CNTs) are cylindrical structures made entirely of carbon atoms, essentially a rolled-up sheet of graphene with diameters in the nanometer range.

knowledgezone.co.in/trends/brows...

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#Fusion #Energy’s #Secret #AchillesHeel May Have Been Solved : Medium

New #Light #Trick in #Carbon #Nanotubes Could Boost #SolarPower : Sci Tech

A new #AI #Translation system for #Headphones clones multiple voices simultaneously : Tech review

#KnowledgeLinks

knowledgezone.co.in/resources/bo...

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This #OpenAccess #MRSBulletin article features the edited transcript from the #F23MRS Von Hippel Award talk. Reshef Tenne discusses the synthesis, characterization, and properties of inorganic #nanotubes from #2Dcompounds and misfit layered compounds.

buff.ly/uWqiqte

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The latest issue of ACS Applied Materials & Interfaces (@ACS_AMI) is live! On the cover: “#Nanoarchitectured N-#Heterocyclic Carbene-Pt #Nanoparticles on #Carbon #Nanotubes: Toward Advanced #Electrocatalysis in the #Hydrogen Evolution Reaction”

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Vantablack is a material made from carbon nanotubes that absorbs 99.96% of light!
It is considered the blackest black in existence.
If you’re wondering, vanta stands for vertically aligned carbon nanotube arrays.
Via @moserwatches
#watch #tech #nanotubes #vanta

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Robust doping of single-walled carbon nanotubes with ionic liquids: experiment and first-principles modeling Single-walled carbon nanotubes (SWCNTs) have considerable application potential. Due to their unique electrical properties, they are expected to become critical components of future microelectronics. ...

👉Recent #research by Dawid Janas et al. from Silesian University of Technology

📢Robust doping of single-walled #carbon #nanotubes with ionic liquids: experiment and first-principles modeling
#Chemsky #Materials #MCF_research #SWCNTs

doi.org/10.1039/D4QM...

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Ti‐Modified Imogolite Nanotubes as Promising Photocatalyst 1D Nanostructures for H2 Production Ti-modified imogolite nanotubes with polarized walls are developed as potential nanoreactors for photocatalysis applications. A multi-scale analysis reveals the evolution of the structure and the opt...

🔹 b) Emerging #Photoelectrocatalysts 🎯
A novel #doping strategy using #imogolite #nanotubes with permanent #polarization, enabling a unique #transversal #band #structure and enhanced #photocatalytic #hydrogen production.
📖 Read it here: onlinelibrary.wiley.com/doi/full/10....

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🧠 Des nanotubes dans le cerveau ?
L'équipe de Chiara Zurzulo a observé des nanotubes entre neurones chez le poisson-zèbre. Ces structures facilitent la communication mais peuvent propager des toxines liées aux maladies neurodégénératives. Une découverte prometteuse 🔬 #Parkinson #nanotubes

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SciTech Chronicles. . . . . . . . .Mar 15th, 2025 Mundus sine Caesaribus Vol II No 67 299 links Curated Nanomaterials could be used in more accurate sensors for healthcare. https://www.sci...

SciTech Chronicles. . . . . . . . .Mar 15th, 2025

bit.ly/stc031525

#graphene #nanotubes #chirality #adsorption #wetlands #sequestration #subsidence #erosion #perchlorates, #iron #silica #gypsum #information #context #hippocampus #abstract #micro-lightning #ionize #droplet #polymerization

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The Future of Luxury Shopping: New Concept Store by Quantum Carbon Design
In the ever-evolving world of luxury retail, innovation is the key to staying ahead. Quantum Carbon Design is revolutionizing the industry with a groundbreaking concept store that merges cutting-edge nanotechnology, luxury fashion, and elite security solutions. This visionary approach isn’t just about shopping—it’s about experiencing the future of retail where exclusivity meets advanced science.

A New Era of Luxury Shopping
The traditional luxury shopping experience is being redefined. Consumers today expect more than just high-end products; they seek personalized, high-tech, and immersive experiences. With this concept store, Quantum Carbon Design introduces a fusion of fashion, security, and futuristic design to create a retail space unlike any other.

Imagine walking into a boutique where bulletproof nanotube technology enhances the fabrics, ensuring not just elegance but also protection. The space itself is designed with high-tech materials used by NASA, offering an unparalleled sensory and visual experience.

The Future of Luxury Shopping: New Concept Store by Quantum Carbon Design In the ever-evolving world of luxury retail, innovation is the key to staying ahead. Quantum Carbon Design is revolutionizing the industry with a groundbreaking concept store that merges cutting-edge nanotechnology, luxury fashion, and elite security solutions. This visionary approach isn’t just about shopping—it’s about experiencing the future of retail where exclusivity meets advanced science. A New Era of Luxury Shopping The traditional luxury shopping experience is being redefined. Consumers today expect more than just high-end products; they seek personalized, high-tech, and immersive experiences. With this concept store, Quantum Carbon Design introduces a fusion of fashion, security, and futuristic design to create a retail space unlike any other. Imagine walking into a boutique where bulletproof nanotube technology enhances the fabrics, ensuring not just elegance but also protection. The space itself is designed with high-tech materials used by NASA, offering an unparalleled sensory and visual experience.

The Future of Luxury Shopping: New Concept Store by Quantum Carbon Design
In the ever-evolving world of luxury retail, innovation is the key to staying ahead. Quantum Carbon Design is revolutionizing the industry with a groundbreaking concept store that merges cutting-edge nanotechnology, luxury fashion, and elite security solutions. This visionary approach isn’t just about shopping—it’s about experiencing the future of retail where exclusivity meets advanced science.

A New Era of Luxury Shopping
The traditional luxury shopping experience is being redefined. Consumers today expect more than just high-end products; they seek personalized, high-tech, and immersive experiences. With this concept store, Quantum Carbon Design introduces a fusion of fashion, security, and futuristic design to create a retail space unlike any other.

Imagine walking into a boutique where bulletproof nanotube technology enhances the fabrics, ensuring not just elegance but also protection. The space itself is designed with high-tech materials used by NASA, offering an unparalleled sensory and visual experience.

https://quantumcarbondesign.com/the-future-of-luxury-shopping-new-concept-store-by-quantum-carbon-design/

The Future of Luxury Shopping: New Concept Store by Quantum Carbon Design In the ever-evolving world of luxury retail, innovation is the key to staying ahead. Quantum Carbon Design is revolutionizing the industry with a groundbreaking concept store that merges cutting-edge nanotechnology, luxury fashion, and elite security solutions. This visionary approach isn’t just about shopping—it’s about experiencing the future of retail where exclusivity meets advanced science. A New Era of Luxury Shopping The traditional luxury shopping experience is being redefined. Consumers today expect more than just high-end products; they seek personalized, high-tech, and immersive experiences. With this concept store, Quantum Carbon Design introduces a fusion of fashion, security, and futuristic design to create a retail space unlike any other. Imagine walking into a boutique where bulletproof nanotube technology enhances the fabrics, ensuring not just elegance but also protection. The space itself is designed with high-tech materials used by NASA, offering an unparalleled sensory and visual experience. https://quantumcarbondesign.com/the-future-of-luxury-shopping-new-concept-store-by-quantum-carbon-design/

The Future of Luxury Shopping: New Concept Store by Quantum Carbon Design

#bodyarmor #defensetech #carbonfiber #nanotubes #cnt #callofduty #armor

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Quantum Carbon Design Introduces Next-Generation Bulletproof Armor with Patent Pending NATO Technology

Quantum Carbon Design Introduces Next-Generation Bulletproof Armor with Patent Pending NATO Technology

Quantum Carbon Design Introduces Next-Generation Bulletproof Armor with Patent Pending NATO Technology

#nato #quantumcarbondesign #nanotubes #carbonfiber #combat #armor #bulletproof #defensetech

www.issuewire.com/quantum-carb...

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I apologize, y’all.

It’s #Nanotubes.

. . . And, it’s my #AgeingEyes that causes my typos.

Is it wrong for me to ask that, #SinceBluesky can’t solve my old ass eye issue, they could at least provide a 5 minute edit option?

Half the time, I spot a typo, I delete & correct it.
Other half? Delete.

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Very happy that our work is explained in @quantamagazine.bsky.social in such a wonderful way 😊
#marinecyanobacteria #Nanotubes

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Inbox | Substack

The Science & Technology Chronicles. . . . .January 6th, 2025

bit.ly/stc010625

#Space #junk #burnup #deorbit #seismic #tracking #Humans #dogs #heart #synchronization#DASS #unwarranted #balanced #Deep #Vanguard #saturation #diving #cyanobacteria #bridges #nanotubes #NSF #NSB #Advise #K-12 #NDEA

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Saurabh Bhattacharya (Sigal Ben Yehuda group)- The native molecular cargo transported via interspecies bacterial nanotubes

#Bsubtilis #nanotubes

#MultiBac2025

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