Kyushu University researchers create a self-healing hydrogel packaging that tracks food spoilage through color changes, extending shelf life by 12 hours. The material can also repair itself, making it more durable and reliable in practical use.
SourceKyushu University·JournalChemical Engineering Journal·TypeExperimental study·DateAug 6, 2026
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GQ GMC-500Plus Geiger Counter logs beta, gamma, and X-ray levels for environmental monitoring, training labs, and safety demonstrations.
Fluctuations in nanopore structure are key to efficient molecule separation, according to a new study. The research found that dynamic 'breathing' motions can selectively accelerate the transport of one molecule over another, leading to improved separation performance.
SourceKyoto University·JournalNature Communications·TypeComputational simulation/modeling·DateJul 28, 2026
A team at Graz University of Technology has solved the puzzle of MOF thin film structure using advanced diffraction techniques and computational modeling. They found that prototypical Cu(bdc) thin films are not porous as expected, but instead densely packed with additional hydroxide groups.
SourceGraz University of Technology·JournalAdvanced Functional Materials·TypeComputational simulation/modeling·DateJul 2, 2026
Scientists at TU Wien have designed a new sustainable route to ammonia synthesis using metal-organic frameworks (MOFs) as catalysts. By tuning the MOF structures, they can modulate their catalytic performance, providing valuable insights into more efficient and sustainable ammonia-production technologies.
SourceVienna University of Technology·JournalJournal of the American Chemical Society·TypeExperimental study·DateJun 10, 2026
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Apple iPhone 17 Pro delivers top performance and advanced cameras for field documentation, data collection, and secure research communications.
Researchers developed amine-functionalized biochar/cellulose acetate hybrid membranes using microalgae biomass, improving water filtration and reducing foulant adhesion. The modified membranes achieved a water flux of 169.1 L m⁻² h⁻¹ and 64.1% removal of natural organic matter.
SourceBiochar Editorial Office, Shenyang Agricultural University·JournalBiochar·TypeExperimental study·DateMay 29, 2026
Researchers created a novel material by converting microalgae biomass into biochar and modifying it with amine functional groups, producing hybrid filters with enhanced purification performance. The new membranes achieved better pollutant rejection and improved resistance to fouling.
SourceBiochar Editorial Office, Shenyang Agricultural University·JournalBiochar·TypeExperimental study·DateApr 1, 2026
Researchers from University of Jyväskylä and Aalto University develop area-selective atomic/molecular layer deposition of europium-organic thin films on graphene and other 2D materials. The method enables precise construction of films with different shapes, one molecule-thick layer at a time.
SourceUniversity of Jyväskylä - Jyväskylän yliopisto·JournalACS Nano·TypeExperimental study·DateMar 25, 2026
Researchers develop oxychar, a highly efficient, budget-friendly alternative to traditional charred organic materials for toxic cadmium removal. The new material soaks up both agricultural ammonia and cadmium, promising a practical win for sustainable farming.
SourceBiochar Editorial Office, Shenyang Agricultural University·JournalCarbon Research·TypeExperimental study·DateMar 16, 2026
A community-driven standard, Material Preparation Information File (MPIF), has been introduced to improve the reproducibility of metal–organic framework (MOF) syntheses. MPIF offers a modular format for documenting synthesis protocols and characterisation data.
SourceUniversiteit van Amsterdam·JournalAdvanced Materials·DateMar 3, 2026
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Apple iPad Pro 11-inch (M4) runs demanding GIS, imaging, and annotation workflows on the go for surveys, briefings, and lab notebooks.
A KTU researcher's study explores how Nobel Prize-winning metal-organic frameworks (MOFs) can be produced reliably and consistently at an industrial scale. The analysis shows that with the right production methods, MOF manufacturing can be financially viable within a short period of time.
SourceKaunas University of Technology·JournalJournal of the Indian Chemical Society·DateFeb 5, 2026
Researchers have developed a new algae-based biochar material that breaks down PFOA with remarkable ability. The new material combines advanced nanotechnology with sustainable biomass resources, providing a promising strategy for removing difficult contaminants from water.
SourceBiochar Editorial Office, Shenyang Agricultural University·JournalBiochar·TypeExperimental study·DateFeb 4, 2026
Researchers created a two-dimensional MOF-based nano-impeller that achieved efficient photoisomerization and on-demand cargo delivery. The study found that mechanical activation and dimensionality synergistically regulate the photo-switching dynamics, enabling 99% cargo release within 50 minutes.
SourceChinese Chemical Society·JournalCCS Chemistry·TypeExperimental study·DateJan 28, 2026
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CalDigit TS4 Thunderbolt 4 Dock simplifies serious desks with 18 ports for high-speed storage, monitors, and instruments across Mac and PC setups.
Researchers at Tohoku University have demonstrated a water-resistant and recyclable redox-active metal-organic framework (RAMOF) that can store electrons in acidic aqueous solutions. The breakthrough material shows high durability in an aqueous RAMOF-based rechargeable battery.
SourceTohoku University·JournalNature Communications·DateDec 2, 2025
A new open-access tool, MOF-ChemUnity, offers a systematic way to organize and synthesize knowledge about metal–organic frameworks (MOFs), enabling the discovery of their potential uses in drug delivery, catalysis, carbon capture, and more. The system creates a unified foundation that both researchers and AI systems can build on, reduc...
SourceUniversity of Toronto Faculty of Applied Science & Engineering·JournalJournal of the American Chemical Society·DateNov 15, 2025
Researchers at OSU have designed a novel manganese-based MOF, BVR-19, which is less toxic to patients and more environmentally friendly than current contrast agents. The new material has shown promising results in medical imaging, with higher r1 relaxivity and biocompatibility.
SourceOregon State University·JournalJournal of Materials Chemistry B·TypeExperimental study·DateNov 7, 2025
A Chinese research team developed an innovative device that skips CO₂ purification, cuts costs, and produces commercial-grade HCOOH directly from dilute emissions. The membrane-integrated electrolyzer concentrates CO2 to high levels for efficient conversion, producing a valuable liquid fuel and industrial chemical.
SourceScience China Press·JournalNational Science Review·DateNov 7, 2025
Creality K1 Max 3D Printer
Creality K1 Max 3D Printer rapidly prototypes brackets, adapters, and fixtures for instruments and classroom demonstrations at large build volume.
A glassy metal-organic framework coating accelerates ion desolvation, stripping solvent molecules from lithium ions, while a second layer enables rapid transport into the graphite bulk. This synergistic design results in unprecedented fast-charging performance, with batteries maintaining high capacity and stability.
SourceScience China Press·JournalNational Science Review·TypeExperimental study·DateNov 6, 2025
Researchers develop new electrochromic MOF platform by mixing two materials at the molecular level, allowing multidirectional control of color change. This innovation enables future smart electronics with quick, reversible and energy-efficient color responses.
SourceScience China Press·JournalNational Science Review·TypeExperimental study·DateOct 31, 2025
A team developed a metal-organic framework (MOF) neuron that perceives dopamine, a key neurotransmitter in the brain. The device demonstrated synaptic plasticity, integrate-and-fire dynamics, and spike tuning, mirroring biological neurons' behavior.
SourceScience China Press·JournalNational Science Review·TypeExperimental study·DateSep 4, 2025
Researchers have made significant advancements in soft porous crystals (SPCs) with promising applications in gas storage, separation, catalysis, and devices. The 'dose sensitivity' of SPCs directly affects their economic viability, with high performance and batch consistency crucial for trace or low-dose applications.
SourceIndustrial Chemistry & Materials·JournalIndustrial Chemistry and Materials·TypeLiterature review·DateSep 4, 2025
Researchers at UNIST developed a platform to engineer moiré systems with customizable length scales, enabling precise control over electronic properties. The study introduces quasiperiodic patterns with potential to subtly influence electron behavior.
SourceUlsan National Institute of Science and Technology(UNIST)·JournalNature Communications·DateAug 13, 2025
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Apple Watch Series 11 (GPS, 46mm) tracks health metrics and safety alerts during long observing sessions, fieldwork, and remote expeditions.
Researchers developed a triggered air-water interfacial coordination assembly method to synthesize ultrathin large-sized continuous 2D MOF membranes within just 30 minutes. The method enables highly accurate permeable and stable H2/CO2 separation, revolutionizing industrial separation processes.
SourceScience China Press·JournalNational Science Review·TypeExperimental study·DateAug 13, 2025
A new strategy enables the rapid fabrication of high-performance 2D MOF membranes with customizable pores, achieving efficient gas separation. The approach accelerates membrane development time from hours to minutes while reducing organic ligand consumption.
SourceDalian Institute of Chemical Physics, Chinese Academy Sciences·JournalNational Science Review·TypeCommentary/editorial·DateAug 10, 2025
Researchers developed a new class of 2.5D MOFs using triptycene-based molecules, enabling high-quality single crystals for detailed structural and functional studies. The materials exhibit strong electronic and magnetic correlations in the interlayer direction, paving the way for next-generation MOF-based technologies.
SourceKumamoto University·JournalJournal of the American Chemical Society·TypeExperimental study·DateAug 1, 2025
A new AI system developed by U of T researchers can predict the potential real-world use for a new material, using early-stage data. The tool focuses on porous materials like metal-organic frameworks (MOFs), which have tunable properties leading to various applications.
SourceUniversity of Toronto Faculty of Applied Science & Engineering·JournalNature Communications·DateJul 28, 2025
Researchers from Northwestern University developed a novel approach to integrate metal-sulfur active sites into metal-organic frameworks, which significantly outperformed their non-sulfur counterparts in hydrogenation catalysis. The study provides a powerful new strategy to design and study metal-sulfur catalysts for various applications.
SourceNorthwestern University·JournalNature Chemistry·DateJul 24, 2025
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Meta Quest 3 512GB enables immersive mission planning, terrain rehearsal, and interactive STEM demos with high-resolution mixed-reality experiences.
A study reveals that metal-organic frameworks (MOFs) can be toxic to mice, causing disruptions in blood cell formation and immune balance. The researchers found that the MOFs suppressed production of certain cells but also triggered a rebound effect, leading to increased inflammation.
SourceEditorial Office of Journal of Environmental Sciences·JournalJournal of Environmental Sciences·TypeExperimental study·DateJun 24, 2025
Advanced electron crystallography techniques have revealed the unexpected structure of carmine, a natural red colouring agent. The substance has a well-defined, three-dimensional porous structure composed of two calcium ions, two aluminium ions, and four organic ligand molecules.
SourceStockholm University·JournalCrystal Growth & Design·TypeExperimental study·DateJun 3, 2025
A team of scientists at UNIST developed a data-driven structure prediction algorithm that led to the synthesis of three novel porous materials with exceptional selectivity in gas separation. The newly developed materials have significant potential for greenhouse gas separation and purification applications.
SourceUlsan National Institute of Science and Technology(UNIST)·JournalJACS Au·DateApr 30, 2025
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Sony Alpha a7 IV (Body Only) delivers reliable low-light performance and rugged build for astrophotography, lab documentation, and field expeditions.
A research team developed a novel strategy to balance high catalytic activity and durability under industrial-level conditions. They constructed a MOF@POM superstructure that undergoes an in-situ transformation into a single-layer CoFe hydroxide catalyst, exhibiting exceptional performance in alkaline electrolytes.
SourceChinese Academy of Sciences Headquarters·JournalScience·DateApr 25, 2025
Researchers developed fluorescent polyionic nanoclays that can be customized for medical imaging, sensor technology, and environmental protection. These tiny clay-based materials exhibit high brightness and versatility, enabling precise tuning of optical properties.
SourceUniversity of Missouri-Columbia·JournalChemistry of Materials·DateApr 16, 2025
Researchers at Graz University of Technology developed a new understanding of how complex materials like organic semiconductors and MOFs transport thermal energy. They discovered that phonon tunneling plays a crucial role in heat conduction, enabling targeted design of materials with specific thermal properties.
SourceGraz University of Technology·Journalnpj Computational Materials·TypeComputational simulation/modeling·DateMar 20, 2025
A new material has been developed for efficient separation of deuterium (D2) from hydrogen (H2) at elevated temperatures. The material's performance exceeds that of traditional methods, which operate at extremely low temperatures.
SourceHelmholtz-Zentrum Berlin für Materialien und Energie·JournalNature Communications·TypeExperimental study·DateMar 19, 2025
A novel copper-based zeolite imidazolate framework (Cu-ZIF-gis) has been developed to separate deuterium (D2) from hydrogen (H2) at 120 K (-153°C), exceeding the liquefaction point of natural gas. This material exhibits improved separation efficiency and lower energy consumption compared to traditional methods.
SourceUlsan National Institute of Science and Technology(UNIST)·JournalNature Communications·DateMar 19, 2025
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SAMSUNG T9 Portable SSD 2TB transfers large imagery and model outputs quickly between field laptops, lab workstations, and secure archives.
A novel mixed-ligand strategy creates ultrahigh surface area, chemically stable chiral MOFs ideal for practical applications in asymmetric catalysis. The frameworks demonstrate record-breaking surface areas and exceptional structural features, making them suitable as heterogeneous catalysts.
SourceScience China Press·JournalScience Bulletin·TypeExperimental study·DateFeb 21, 2025
Researchers at TU Wien developed COK-47, a powdery solid substance with remarkable capabilities, by combining organic and inorganic chemistry. In humid environments, the material forms a tribofilm that ensures extremely low friction, making it highly interesting for industry applications.
SourceVienna University of Technology·JournalAdvanced Science·TypeExperimental study·DateFeb 18, 2025
A research team led by Paolo Falcaro has developed a microporous crystal compound that detects toxic chemical compounds produced when protein-rich foods spoil. The ERC Proof of Concept Grant will explore practical applications for the composite ink, which changes color depending on the concentration of toxic compounds.
DJI Air 3 (RC-N2)
DJI Air 3 (RC-N2) captures 4K mapping passes and environmental surveys with dual cameras, long flight time, and omnidirectional obstacle sensing.
Researchers developed a bioinspired MOF membrane with a scale-like structure to separate propylene from propane. The membrane achieved excellent separation performance, exceeding 220, and retained its stability for over 1,000 hours.
SourceDalian Institute of Chemical Physics, Chinese Academy Sciences·JournalNature Communications·TypeCommentary/editorial·DateJan 15, 2025
Researchers developed a new cathode material using MOF-mediated synthesis, achieving over 1000 stable battery cycles with exceptional capacity retention. The material's unique structure boosts electronic conductivity, inhibits Mn dissolution, and improves long-term cycling stability.
SourceSongshan Lake Materials Laboratory·JournalMaterials Futures·DateDec 20, 2024
Researchers at Nagoya University developed a novel porous metal-organic framework (MOF) that combines adsorption and dissolution to separate oxygen from argon. The 'adsorptive-dissolution' mechanism enhances gas separation efficiency and selectivity, with potential applications in industries requiring high-purity oxygen.
SourceNagoya University·JournalNature Communications·DateDec 18, 2024
Researchers at TUM have identified a new, highly effective filter material that can remove hazardous PFAS chemicals from drinking water. The bespoke metal-organic framework compounds are adaptable and electrostatically charged, significantly improving filter capacity compared to existing materials.
SourceTechnical University of Munich (TUM)·JournalAdvanced Materials·TypeExperimental study·DateDec 9, 2024
Researchers at Oregon State University have discovered a way to increase the effectiveness of a chemical structure for scrubbing carbon dioxide from factory flues. The new method uses metal-organic frameworks (MOFs) and achieves more than double the capture ability compared to traditional sorbents.
SourceOregon State University·JournalJACS Au·TypeExperimental study·DateDec 3, 2024
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Celestron NexStar 8SE Computerized Telescope combines portable Schmidt-Cassegrain optics with GoTo pointing for outreach nights and field campaigns.
Researchers at UC Berkeley have developed a metal-organic framework that can capture CO2 at extreme temperatures, relevant to cement and steel manufacturing plants. The discovery has the potential to change how scientists think about carbon capture and reduces the need for costly infrastructure.
SourceUniversity of California - Berkeley·JournalScience·DateNov 14, 2024
A research team developed a metal-organic framework (MOF) that suppresses charge recombination, enabling efficient overall water splitting. The MOF's dynamic structural twist prolongs the lifetime of excited-state electrons.
SourceUniversity of Science and Technology of China·JournalNature Chemistry·DateNov 3, 2024
A new covalent organic framework (COF) material developed by UC Berkeley researchers can capture CO2 from ambient air without degradation, making it a promising solution for reducing atmospheric greenhouse gases. The material's high carbon dioxide capacity and selectivity make it an attractive alternative to existing carbon capture tec...
SourceUniversity of California - Berkeley·JournalNature·DateOct 23, 2024
A new MOF has been developed using a 'Merged-Net Strategy' inspired by skyscraper architecture, resulting in enhanced porosity and structural stability. The material exhibits superior water adsorption capacity and reusability compared to conventional MOFs.
SourceUlsan National Institute of Science and Technology(UNIST)·JournalAdvanced Functional Materials·DateOct 18, 2024
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Garmin GPSMAP 67i with inReach provides rugged GNSS navigation, satellite messaging, and SOS for backcountry geology and climate field teams.
Researchers developed a novel strategy for designing MOFs, merging bottom-up and top-down approaches to explore structures based on metal clusters. The Up-Down Approach enables the creation of novel materials with tailored properties, including high chemical stability and diverse chemical properties.
SourceUlsan National Institute of Science and Technology(UNIST)·JournalNature Synthesis·DateSep 5, 2024
A team of researchers has developed a new membrane material that can detect and remove pharmaceutical chemicals from water at trace levels. The new approach uses a polymer membrane with an interconnected network of pores, which are designed to capture larger molecules, allowing for more effective filtration.
SourceInstitute for Integrated Cell-Material Sciences, Kyoto University·JournalCommunications Materials·DateSep 4, 2024
Early porous coordination polymers (PCPs) exhibit a flexible 'soft' nature, allowing them to adjust their shape and hold more gas. This finding offers new insights into the evolution of PCPs and paves the way for future research and applications.
SourceInstitute for Integrated Cell-Material Sciences, Kyoto University·JournalCommunications Materials·DateSep 2, 2024
Researchers at Sandia National Laboratories have created a cleaner way to separate rare-earth elements from complex mixtures. They designed sponges that selectively absorb one metal while excluding others, with the potential to improve purification processes globally.
SourceDOE/Sandia National Laboratories·JournalACS Applied Materials & Interfaces·TypeExperimental study·DateAug 27, 2024
Apple MacBook Pro 14-inch (M4 Pro)
Apple MacBook Pro 14-inch (M4 Pro) powers local ML workloads, large datasets, and multi-display analysis for field and lab teams.
Researchers developed MOF confined crown ether membranes with high monovalent ion permeation rates and selectivity. The membranes provided theoretical guidance for constructing precise separation membranes for ions in complex systems.
SourceUniversity of Science and Technology of China·JournalScience Advances·DateJul 24, 2024
Researchers at the University of Utah have developed a compact rapid cycling fuel-fired atmospheric water harvesting device that can produce clean drinking water in arid places. The device uses hygroscopic materials to draw water molecules out of non-humid air and then applies heat to release those molecules into liquid form.
SourceUniversity of Utah·JournalCell Reports Physical Science·TypeExperimental study·DateJul 23, 2024
Researchers have developed a new electrochromic film based on metal-organic frameworks that can quickly switch between transparent and colored states to block or allow sunlight. The film demonstrated reliable performance for over 40 hours and 4,500 cycles of switching.
SourceAmerican Chemical Society·JournalACS Energy Letters·DateMay 29, 2024
A new detector system uses a combination of metal-organic frameworks and conductive polymers to provide continuous monitoring of toxic gases. The material shows high sensitivity and reversibility, enabling detection at low concentrations, making it suitable for industrial or home settings.
SourceMassachusetts Institute of Technology·JournalAdvanced Materials·DateMay 16, 2024
Sky-Watcher EQ6-R Pro Equatorial Mount
Sky-Watcher EQ6-R Pro Equatorial Mount provides precise tracking capacity for deep-sky imaging rigs during long astrophotography sessions.
A new atomically-thin material has been discovered that can switch between an insulating and conducting state by controlling the number of electrons. This property makes it a promising candidate for use in electronic devices such as transistors.
SourceARC Centre of Excellence in Future Low-Energy Electronics Technologies·JournalNature Communications·TypeExperimental study·DateApr 29, 2024
Researchers at KAIST have developed a hybrid sodium-ion battery with high energy and power density, enabling rapid charging in under a few seconds. The new battery technology has the potential to revolutionize energy storage for electric vehicles and other applications.
SourceThe Korea Advanced Institute of Science and Technology (KAIST)·JournalEnergy Storage Materials·TypeMeta-analysis·DateApr 19, 2024
Scientists achieve room-temperature quantum coherence by embedding a chromophore in a metal-organic framework, enabling the creation of quintet state qubits with four electron spins. This breakthrough could lead to the development of multiple qubit systems at room temperature, revolutionizing quantum computing and sensing.
SourceKyushu University·JournalScience Advances·TypeExperimental study·DateJan 11, 2024
Researchers unveiled a two-dimensional Metal Organic Framework (MOF) that showcases negative thermal expansion and unique origami tessellation patterns. The MOF's deformable net topology enables origami-like movement in response to temperature changes.
SourceUlsan National Institute of Science and Technology(UNIST)·JournalNature Communications·DateDec 18, 2023
Researchers at CSU and the University of St. Andrews created an effective antimicrobial material that slowly releases nitric oxide, killing bacteria and fungus over time.
SourceColorado State University·JournalACS Applied Materials & Interfaces·DateNov 15, 2023
Anker Laptop Power Bank 25,000mAh (Triple 100W USB-C)
Anker Laptop Power Bank 25,000mAh (Triple 100W USB-C) keeps Macs, tablets, and meters powered during extended observing runs and remote surveys.
Researchers propose a novel approach to customize metal-organic frameworks (MOFs) for efficient membrane separations. The strategy involves modularizing custom defect-free MOF separation membranes, allowing for rapid production of high-performance membranes.
SourceDalian Institute of Chemical Physics, Chinese Academy Sciences·JournalAngewandte Chemie International Edition·TypeCommentary/editorial·DateNov 13, 2023